Cephalopod size
Cephalopods, which include squids and octopuses, vary enormously in size. The smallest are only about Script error: No such module "convert". long and weigh less than Script error: No such module "convert". at maturity, while the giant squid can exceed Script error: No such module "convert". in length and the colossal squid weighs close to half a tonne (Script error: No such module "convert".), making them the largest living invertebrates. Living species range in mass more than three-billion-fold,Template:Refn or across nine orders of magnitude, from the lightest hatchlings to the heaviest adults.[1] Certain cephalopod species are also noted for having individual body parts of exceptional size.[2]
Cephalopods were at one time the largest of all organisms on Earth,[3] and numerous species of comparable size to the largest present day squids are known from the fossil record, including enormous examples of ammonoids, belemnoids, nautiloids, orthoceratoids, teuthids, and vampyromorphids. In terms of mass, the largest of all known cephalopods were likely the giant shelled ammonoids and endocerid nautiloids,[4] though perhaps still second to the largest living cephalopods when considering tissue mass alone.[5]
Cephalopods vastly larger than either giant or colossal squids have been postulated at various times. One of these was the St. Augustine Monster, a large carcass weighing several tonnes that washed ashore on the United States coast near St. Augustine, Florida, in 1896. Reanalyses in 1995 and 2004 of the original tissue samples—together with those of other similar carcasses—showed conclusively that they were all masses of the collagenous matrix of whale blubber.[6]
Giant cephalopods have fascinated humankind for ages. The earliest surviving records are perhaps those of Aristotle and Pliny the Elder, both of whom described squids of very large size.[7] Tales of giant squid have been common among mariners since ancient times, and may have inspired the monstrous kraken of Nordic legend, said to be as large as an island and capable of engulfing and sinking any ship.[8] Similar tentacled sea monsters are known from other parts of the globe, including the Akkorokamui of Japan and Te Wheke-a-Muturangi of New Zealand. The Lusca of the Caribbean and Scylla in Greek mythology may also derive from giant squid sightings,[9] as might eyewitness accounts of other sea monsters such as sea serpents.[10]
Cephalopods of enormous size have featured prominently in fiction.[11] Some of the best known examples include the giant squid from Jules Verne's 1870 novel Twenty Thousand Leagues Under the Seas and its various film adaptations; the giant octopus from the 1955 monster movie It Came from Beneath the Sea; and the giant squid from Peter Benchley's 1991 novel Beast and the TV film adaptation of the same name.
Due to its status as a charismatic megafaunal species, the giant squid has been proposed as an emblematic animal for marine invertebrate conservation.[12] Life-sized models of the giant squid are a common sight in natural history museums around the world,[13] and preserved specimens are much sought after for display.[14]<templatestyles src="Template:TOC limit/styles.css" />
Size in teuthology
Mantle length
Mantle length (ML) is the standard size measure for coleoid cephalopods (shell diameter being more common for nautiluses) and is almost universally reported in the scientific literature. The mantle is the cephalopod's "body", lying posterior to the head and enclosing the visceral mass and mantle cavity, the latter being used for locomotion by jet propulsion. Unless otherwise indicated, mantle length is measured dorsally over the midline of the mantle (sometimes specified as dorsal mantle length, DML). It is a straight-line measure, not measured over the curve of the body. In Decapodiformes (ten-limbed cephalopods), mantle length is measured from the anterior edge of the mantle (near the head), to the posterior end of the mantle or the apex of the united fins, whichever is longer. In Octopodiformes (eight-limbed cephalopods), the anterior edge of the mantle is not clearly delimited dorsally due to advanced head–mantle fusion, and mantle length is therefore taken from the midpoint between the eyes to the posterior end of the mantle. When ventral mantle length is meant instead of dorsal this is always specified as such and abbreviated VML.[15]
As an indication of overall size, mantle length is generally considered more reliable than total length because cephalopod limbs may easily be stretched beyond their natural length and are often damaged or missing in preserved specimens (this is particularly true of the long tentacles of many squid species).[16] Nevertheless, mantle length is not equally applicable to all species. Certain benthic octopuses such as Callistoctopus ornatus are able to elongate and retract their mantles and therefore mantle length measurements, even when taken from a live specimen, may vary considerably. Another problematic case is that of the gelatinous cirroteuthids, whose weakly muscled mantles are prone to substantial shrinkage during preservation. The interocular distance may be a more reliable standard for this group.[17]
Total length
Total length (TL) is measured along the dorsal midline with the limbs outstretched and in line with the body axis. It is the greatest measurable extent of a specimen from the posterior end of the mantle or fins (or tail, if present[18]) to the apex of the longest limb.[15] It is recommended that arms and tentacles be measured in a relaxed state so as not to exaggerate their length, but historically this practice was not always followed and some of the more extreme published giant squid measurements have been attributed to artificial lengthening of the tentacles.[19] Although total length is often mentioned in relation to the largest cephalopod species, it is otherwise seldom used in teuthology.[20] As with mantle length, it is a straight-line measure.
Total length is not to be confused with arm span—also known as arm spread, radial span, or radial spread—which may be much larger and is often reported for octopuses (for which the arms usually constitute the vast majority of the length). In squids, total length is inclusive of the feeding tentacles, which in some species may be longer than the mantle, head, and arms combined (chiroteuthids such as Asperoteuthis acanthoderma being a prime example).
A related measure is standard length (SL), which is the combined length of the mantle, head, and arms, excluding the often long feeding tentacles.[21] This measure is particularly useful for species such as the giant squid, where almost the entire bulk of the animal takes up less than half of its total length.
Mass
Mass (often abbreviated WT for 'weight') is reported far less frequently than either mantle or total length, and accurate records do not exist for all of the large cephalopod species. It can also vary widely depending on the state of the specimen at the time of weighing (for example, whether it was measured live or dead, wet or dry, frozen or thawed, pre- or post-fixation, with or without egg mass, and so on).
Methods of size determination
In contrast to the vast majority of living cephalopods, which are wholly soft-bodied, size determination of the few surviving shelled species (in terms of shell diameter) is comparatively straightforward and can be accomplished with a high level of precision. Whatever the type of cephalopod, in the absence of whole specimens, size can often be estimated from only partial remains. For example, cephalopod beaks can be used for mantle length, total length and body mass estimation,[22] and this method has notably been used to estimate the maximum size of the colossal squid. The lower rostral length (LRL) of the beak is often used for this purpose. The rostral length of the lower and upper beaks is the standard measure of beak size in Decapodiformes; hood length is preferred for Octopodiformes.[23]
Mantle length has been estimated from video recordings of squid in the wild.[24]
Early life stages
Hatchlings
Hatchlings of Idiosepius thailandicus, possibly the smallest extant cephalopod species at maturity, have a mantle length of around Script error: No such module "convert"..[25] The closely related Idiosepius pygmaeus weighs only Script error: No such module "convert". upon hatching and increases in weight to Script error: No such module "convert". as it reaches maturity in 50 days.[26] Even smaller are the hatchlings of the commercially important Illex illecebrosus, with a mass of Script error: No such module "convert"..[27] Hatchlings of the giant Pacific octopus (Enteroctopus dofleini)—one of the two largest octopus species—weigh Script error: No such module "convert". on average.[28]
At the other extreme are nautiluses, which upon hatching typically have a shell diameter of Script error: No such module "convert". or more (depending on the species), the largest hatchling size among extant invertebrates.[29] Hatchlings of Nautilus belauensis, one of the larger species, are estimated to weigh on the order of Script error: No such module "convert".Template:Refn and mature at around Script error: No such module "convert". after almost 4000 days, or around 11 years.[26]
Smallest adult size
The smallest adult size among living cephalopods is attained by the so-called pygmy squids, Idiosepius,[30] and certain diminutive species of the genus Octopus, both of which weigh less than Script error: No such module "convert". at maturity.[31] Idiosepius thailandicus is perhaps the smallest of all, with females averaging Script error: No such module "convert". in mantle length and males Script error: No such module "convert"..[32] Average wet weights are around Script error: No such module "convert"., respectively.[32]
Other tiny species include members of the bobtail squid family Sepiolidae; the myopsid squid genera Australiteuthis and Pickfordiateuthis; the oegopsid squid genera Abralia and Abraliopsis; the pygmy cuttlefish Sepia pulchra; and the ram's horn squid, Spirula spirula.
Male dwarfism
The octopod superfamily Argonautoidea is characterised by markedly dwarfed males.[33] The four extant genera of the group are Argonauta, Haliphron, Ocythoe, and Tremoctopus, all of which are exclusively pelagic. The greatest disparity in the size of the sexes is seen in the blanket octopuses of the genus Tremoctopus. Norman et al. (2002) reported a fully mature male Tremoctopus violaceus measuring Script error: No such module "convert". in total length and weighing a mere Script error: No such module "convert".. By comparison, the large females of this species reach total lengths of Script error: No such module "convert". and probably some Script error: No such module "convert". in weight. This is the most extreme sexual size dimorphism known among non-microscopic animals,Template:Refn with mature females being at least 10,000 times heavier than males, and likely up to 40,000 times heavier.[34] The related genera Argonauta and Ocythoe have similarly small males, but the females are not nearly as large as those of Tremoctopus, and the size dimorphism is therefore less pronounced. The females of the fourth argonautoid genus, Haliphron, are the largest of all up to length of Script error: No such module "convert". and mass of Script error: No such module "convert". (and possibly the largest octopuses of any kind), but the males are also much larger, at up to Script error: No such module "convert".. So, the size dimorphism is least pronounced of all.[35]
Extinct taxa
Numerous species of so-called micromorphic ammonites are known.[36] Maximites from the Upper Carboniferous is the smallest known ammonoid. Adult specimens reached only Template:Cvt in shell diameter.[37]
Maximum size
Scientifically validated records
Squids are the largest living cephalopods in terms of each of mantle length, total length, and mass, with the largest species by at least two of these measures being the colossal squid, Mesonychoteuthis hamiltoni. Reaching an estimated Script error: No such module "convert". in mantle length and Script error: No such module "convert". in total length, and weighing as much as Script error: No such module "convert"., this species is also the largest of all extant invertebrates.[38] The only other squid that approaches these dimensions is the giant squid of the genus Architeuthis, with females up to Script error: No such module "convert"., Script error: No such module "convert". in mantle length, and possibly as much as Script error: No such module "convert". in total length, making it likely the longest of all cephalopods.[39] The two largest octopus species—Enteroctopus dofleini and Haliphron atlanticus—can both exceed Script error: No such module "convert"., and the former has a maximum total length of more than Script error: No such module "convert".. Cirrate (finned) octopods can also reach a large size, with the largest captured specimen likely being a Cirrothauma magna of Script error: No such module "convert". total length and Script error: No such module "convert". mantle length,[40] though observations from submersibles suggest that members of this group can exceed Script error: No such module "convert". in total length.[41]
Members of the other cephalopod groups are substantially smaller, although the largest cuttlefish can exceed Script error: No such module "convert". in weight and Script error: No such module "convert". in mantle length. Cephalopods of comparable size to the largest present day squid are known from fossil remains, including enormous examples of ammonoids, belemnoids, nautiloids, orthoceratoids, teuthids, and vampyromorphids.[42]
Colossal squid (Mesonychoteuthis hamiltoni)
Though a substantial number of colossal squid (Mesonychoteuthis hamiltoni) remains have been recorded (Xavier et al., 1999 collated 188 geographical positions for whole or partial specimens caught by commercial and scientific fisheries), very few adult or subadult animals have ever been documented, making it difficult to estimate the maximum size of the species. McClain et al. (2015) stated that only 12 "complete" specimens were known. The largest known complete specimen of the colossal squid was a mature female captured in the Ross Sea in February 2007. Its weight was initially estimated at Script error: No such module "convert"., its mantle length at Script error: No such module "convert"., and its total length at Script error: No such module "convert"..[43] Once completely thawed the specimen was found to weigh Script error: No such module "convert"., but to measure only Script error: No such module "convert". in mantle length and Script error: No such module "convert". in total length.[44] It is likely that the specimen, and particularly its tentacles, shrank considerably post mortem as a result of dehydration, having been kept in a freezer for 14 months. (As reported by the Museum of New Zealand Te Papa Tongarewa, specimens of Nototodarus sloanii, the New Zealand arrow squid, can shrink by as much as 22% when dehydrated with alcohol solutions.[44]) The colossal squid specimen contracted by a further 5% after several years in preservative fluid (first formalin and later propylene glycol).[45] The fins of the 2007 Ross Sea specimen measured around Script error: No such module "convert". across and it had a mantle width of Script error: No such module "convert"..[46] The arms ranged in length from Script error: No such module "convert"., while the two tentacles were around Script error: No such module "convert". long.[47]
Beaks recovered from sperm whale stomachs indicate the existence of animals surpassing even the 2007 Ross Sea specimen. That specimen had a lower rostral length (LRL) of Script error: No such module "convert". and weighed Script error: No such module "convert".,[48] whereas the Script error: No such module "convert". submature female from 2003 had a LRL of Script error: No such module "convert"..[49] By comparison, the largest known colossal squid beak from a sperm whale stomach measured Script error: No such module "convert". in LRL.[19] Though the number of large colossal squid specimens known to science is too small to get a good idea of the relationship between beak size and overall body size, a beak of such great size indicates a truly massive animal weighing perhaps as much as Script error: No such module "convert"..[48] However, the scaling relationship for this species shows considerable latitude, as demonstrated by a beak of Script error: No such module "convert". LRL extracted from an animal weighing only Script error: No such module "convert"..[48]
Giant squid (Architeuthis dux)
The maximum size of the giant squid (Architeuthis dux) has long been a subject of both popular debate and academic inquiry.[50] Unlike the colossal squid, the giant squid is known from a substantial number of mature specimens. The total number of recorded specimens (across all developmental stages) approaches a thousand, with approximately 700 documented as of 2015[update]Script error: No such module "Check for unknown parameters"., of which around 460 had been measured in some way.[51] This number has since increased substantially, with 57 specimens recorded from Japanese waters during an exceptional 15-month period between 2014 and 2015.[52]
Based on a 40-year data set of more than 50 giant squid specimens, Roper & Shea (2013:114) suggest an average total length at maturity of Script error: No such module "convert". and a "rarely encountered maximum length" of Script error: No such module "convert".. Of the nearly 100 specimens examined by Clyde Roper, the largest was "Script error: No such module "convert". long".[54] O'Shea & Bolstad (2008) give a maximum total length of Script error: No such module "convert". for females based on the examination of more than 130 specimens, measured post mortem and relaxed, as well as beaks recovered from sperm whales (which do not exceed the size of those found in the largest complete specimens). Steve O'Shea estimated the maximum total length for males at Script error: No such module "convert"..[55] Older records of Script error: No such module "convert". or more were likely exaggerated by stretching of the long feeding tentacles or resulted from inadequate measurement methods such as pacing.[56] O'Shea has stated that, given the available evidence, the highest upper bound he would consider plausible for the giant squid's total length would be Script error: No such module "convert"., and that the likelihood that there exist 20-metre giant squid is "so exceedingly remote that you couldn't justify the effort in writing about it".[57]
Including the head and arms but excluding the tentacles (standard length, SL), the species very rarely exceeds Script error: No such module "convert". according to O'Shea & Bolstad (2008). Paxton (2016a) considers Script error: No such module "convert". to be the greatest reliably measured SL, based on a specimen reported by Verrill (1880a:192), and considers specimens of Script error: No such module "convert". SL or more to be "very probable", but these conclusions have been criticised by giant squid experts.[58] O'Shea (2003a) put the maximum weight of female giant squid at Script error: No such module "convert"., based on the examination of some 105 specimens as well as beaks recovered from sperm whales (which do not exceed the size of those found in the largest complete specimens). Giant squid are sexually size dimorphic, with the maximum weight for males estimated at Script error: No such module "convert".,[55] though heavier specimens have occasionally been reported (such as a Script error: No such module "convert". specimen[59] and a Script error: No such module "convert". specimen[60]). Roper & Jereb (2010a:121) give a maximum weight of up to Script error: No such module "convert"., and "possibly greater". Discredited weights of as much as a tonne (Script error: No such module "convert".) or more are not uncommon in older literature (see below).[19]
Other squid taxa
The third-heaviest extant squid species is Taningia danae, also known as the Dana octopus squid. The largest well documented specimen is a 160 cm ML mature female reported by Roper & Vecchione (1993) from the North Atlantic. The original paper consistently gave the mass of this specimen as Script error: No such module "convert"., but according to Roper & Jereb (2010h:266) this figure is wrong and stems from a typographical error, the correct mass being Script error: No such module "convert".. Another similarly large specimen—a female weighing Script error: No such module "convert".—was reported from northern Spanish waters by González et al. (2003:297) (see also initial reports[61]). In July 2010, a sperm whale was photographed off the Azorean island of Faial with a large squid—likely T. danae—in its mouth. The specimen's maximum width, from fin tip to fin tip, was estimated at Script error: No such module "convert".; this would approximate its mantle length.[62]
Onykia robusta, previously known as Moroteuthis robusta[63] and sometimes called the robust clubhook squid, has a mantle length of up to Script error: No such module "convert"..[64] Some older records exceed this, such as the Script error: No such module "convert". ML reported by Verrill (1876:237) from a specimen with a total length of Script error: No such module "convert". (excluding the ends of the tentacles, which had been destroyed). Nesis (1987:192) likewise gave a maximum mantle length of Script error: No such module "convert"., but Roper & Jereb (2010i:364) wrote that "this old record might be in error", with the species commonly growing to Script error: No such module "convert". ML. Glaubrecht & Salcedo-Vargas (2004:66) provided a maximum total length of Script error: No such module "convert".. Literature sources give a maximum weight of Script error: No such module "convert"..[65] There exist numerous published records of large individuals of this species.[66]
The Humboldt squid (Dosidicus gigas), also known as the 'jumbo squid', grows to a maximum mantle length of at least Script error: No such module "convert".,[68] if not Script error: No such module "convert"..[69] The largest animals are found off the western coast of South America; northern populations reach Script error: No such module "convert". ML, and in general Script error: No such module "convert". ML is more typical for the species.[70] Southern populations may have a total length approaching Script error: No such module "convert".,[70] and possibly up to Script error: No such module "convert"..[71] Again, specimens from the northern hemisphere are much smaller, with those off the Californian coast reaching total lengths of less than Script error: No such module "convert"..[72] The Humboldt squid commonly attains a weight of around Script error: No such module "convert".[70] and can reach a maximum of Script error: No such module "convert"..[73] There are anecdotal reports of much larger individual animals, including from diver Scott Cassell, who has dived with Humboldt squid over 300 times (reportedly more than any other person).[74]Template:Refn
Moroteuthopsis longimana, previously Kondakovia longimana and sometimes known as the giant warty squid, is a little known species with a circum-Antarctic distribution in the Southern Ocean. The largest complete specimen, found floating at the surface off the South Orkney Islands, had a mantle length of Script error: No such module "convert".,[75] but a damaged female specimen with an estimated mantle length of around Script error: No such module "convert". is known.[76] The largest complete specimen had a wet weight of Script error: No such module "convert"..[75] The species' maximum weight has been estimated at Script error: No such module "convert"..[77]
Largest octopodes
The giant Pacific octopus (Enteroctopus dofleini) grows to more than Script error: No such module "convert". in total length[78] and at least Script error: No such module "convert". in mantle length.[79] Cosgrove (1987) and Cosgrove & McDaniel (2009:69) gave a maximum confirmed weight of Script error: No such module "convert". for a live specimen collected in the mid-1960s.[39] Norman et al. (2014:124) accept a maximum weight of at least Script error: No such module "convert"., which approximates the Script error: No such module "convert". reported for a specimen caught off Santa Barbara, California, in 1945, of which photographic evidence survives.[80] No specimens approaching this size have been reported since the middle of the 20th century, with recent specimens very rarely exceeding Script error: No such module "convert"..[81] It is possible that the maximum size of the species has decreased over this period, perhaps due to bioaccumulation of toxicants (see below).[82]
In 2002, a giant specimen of Haliphron atlanticus, the seven-arm octopus, was caught by fishermen trawling at a depth of Script error: No such module "convert". off the eastern Chatham Rise, New Zealand. This specimen, the largest of this species and possibly of all octopuses, was the first validated record of Haliphron from the South Pacific. It had a mantle length of Script error: No such module "convert"., a total length of Script error: No such module "convert"., and a weight of Script error: No such module "convert"., although it was incomplete.[83] The total length of the specimen, when complete, has been estimated at Script error: No such module "convert"., and its weight at Script error: No such module "convert"..[84]
Extinct taxa
Certain extinct cephalopods rivalled or even exceeded the size of the largest living species.[86] In particular, the subclass Ammonoidea is known to have included a considerable number of species that may be considered "giant" (defined by Stevens, 1988 as those exceeding Script error: No such module "convert". in shell diameter). The largest confirmed ammonite, a specimen of Parapuzosia seppenradensis discovered in a German quarry in 1895, measures Script error: No such module "convert". in diameter,[87] though its living chamber is largely missing. The diameter of the complete shell has been estimated at Script error: No such module "convert"., assuming the living chamber took up one-fourth of the outer whorl.[88] Teichert & Kummel (1960:6) suggested an even larger original shell diameter of around Script error: No such module "convert". for this specimen, assuming the body chamber extended for three-fourths to one full whorl. In 1971 a portion of an ammonite possibly surpassing this specimen was reportedly found in a brickyard in Bottrop, western Germany.[89] A specimen found by Jim Rockwood, from the Late Triassic near Williston Lake, British Columbia, was said to measure more than Script error: No such module "convert". across, but was later determined to be a concretion.[90]
Heteromorph ammonites are known to have exceeded Script error: No such module "convert". in length also, but since their shells were uncoiled to varying degrees, they were overall much smaller than the largest non-heteromorphs. The greatest lengths of all were reached by the orthocones of endocerid nautiloids such as Endoceras, which may have exceeded Script error: No such module "convert"., although their maximum size is uncertain; while the largest well documented endocerid fossil is likely the 3-metre-long (Script error: No such module "convert".) shell fragment housed at the Museum of Comparative Zoology, Harvard University, there are published reports of even larger specimens. Teichert (1927) mentioned specimens up to Script error: No such module "convert". long from the Middle Ordovician limestone of Estonia[91] and Frey (1995:72) gave a maximum shell length of Script error: No such module "convert". for the group. On the subject of endocerid size, nautiloid specialist Rousseau H. Flower wrote:
They are not all large, by any means, but specimens twelve feet [Script error: No such module "convert".] in length have been collected, and fragments of greater diameter indicate a much greater maximum length. I am not wholly inclined to discredit a report of an endoceroid found in a quarry near Watertown New York, which was measured before it was broken up and found to attain a length of Script error: No such module "convert"..[92]
However, the uncoiled length of the largest ammonites far exceeds that of even these giant endocerids. Parapuzosia seppenradensis, the largest known ammonite species, had an estimated maximum unrolled shell length of around Script error: No such module "convert".. It was also possibly the heaviest of all known cephalopods, past or present, with an estimated live mass of Script error: No such module "convert"., of which the shell would constitute 705 kg.[93] By comparison, the largest endocerids may have weighed around Script error: No such module "convert"..[4] In terms of mass, these are the largest known invertebrates that have ever lived,[94] though perhaps still second to the largest living cephalopods when considering tissue mass alone, since in shell-bearing species the vast majority of the living tissue is restricted to the body chamber, which occupies only a fraction of the internal shell volume.[5] They might also be the largest—or at least longest—shell-bearing animals that have ever lived.[5]Template:Refn
Cretaceous Yezo Group in Japan yields multiple taxa of large-sized cephalopod fossil remains. Oegopsid Yezoteuthis giganteus and Haboroteuthis poseidon are only known from jaw elements, which is close to size of that of giant squid. Species of Nanaimoteuthis, especially N. hikidai would be the largest known vampyromorph.[95] Unnamed, incomplete upper jaw fossil that is approximately twice as large as that of the mature giant squid is also found there.[96]
Historical claims
Misidentifications
The maximum sizes of certain cephalopod species, most notably the giant squid and giant Pacific octopus, have often been misreported and exaggerated. The literature on cephalopod size has been further muddied by the frequent misattribution of various squid specimens to the giant squid genus Architeuthis, often based solely on their large size. In the academic literature alone, such misidentifications encompass at least the oegopsid families Chiroteuthidae, Cranchiidae, Ommastrephidae, Onychoteuthidae, and Psychroteuthidae.[98]Template:Refn This situation is further confused by the occasional usage of the common name 'giant squid' in reference to large squids of other genera.[99]
Perhaps the most notable misidentification relates to a photograph taken some time before 1993 by diver H. Kubota off southern Japan.[100] The image shows a large individual of Onykia robusta (previously known as Moroteuthis robusta), which appears to be sick or dying, alongside a diver in shallow water.[97] A video of the same animal appeared in a Japanese made-for-television film.[97] The image was published in the 1993 book European Seashells by Guido T. Poppe and Yoshihiro Goto, where it was identified as Architeuthis dux, the giant squid, and said to have been taken in the North Atlantic.[101] If true, this image would represent the first known photograph of a live giant squid. In The Search for the Giant Squid (1998), Richard Ellis wrote:
For a moment, I thought that some obscure photograph had captured the most elusive image in natural history. Fortunately for those who have devoted their lives to searching for Architeuthis, this was only an aberration, a case of mistaken identity.[97]
It would be more than a decade before the true first photographs of a live giant squid in the wild were taken on 30 September 2004 by Tsunemi Kubodera and Kyoichi Mori.[102] Kubodera and his team subsequently became the first to film a live adult giant squid on 4 December 2006,[103] and the first to film a live giant squid in its natural habitat in July 2012.[104] These milestones were preceded by the first footage of a live (paralarval) giant squid in 2001,[105] and the first image of a live adult giant squid on 15 January 2002.[106] Since then, live giant squid have been photographed and filmed on a number of occasions.[107]
Giant squid
Reports of giant squid (Architeuthis dux) specimens reaching or even exceeding Script error: No such module "convert". in total length are widespread, but no animals approaching this size have been scientifically documented in recent times.[109] This is despite there being hundreds of specimens available for study (c.Script error: No such module "Check for unknown parameters". 700 documented as of 2015, of which c.Script error: No such module "Check for unknown parameters". 460 measured in some way[51]), including numerous recent examples, such as the 57 specimens recorded from Japanese waters over a 15-month period in 2014–2015.[52] It is now thought likely that such lengths were achieved by great lengthening of the two long feeding tentacles, analogous to stretching elastic bands, or resulted from inadequate measurement methods such as pacing.[56]
On the subject of the oft-cited maximum size of 18 metres—or 60 feet—Dery (2013) quoted giant squid experts Steve O'Shea and Clyde Roper:
If this figure [45 ft or Script error: No such module "convert".] seems a little short of the Brobdingnagian claims made for Architeuthis in most pop-science stories about the animal, that's probably because virtually every general-interest article dutifully repeats the magic number of 60 feet.
Steve O'Shea deplores the media's perpetuation of what he believes to be a credulity-straining exaggeration, based on the 19th-century biologist Thomas Kirk's eyeball estimate of a specimen's length.Template:Refn In a comment on the final draft of this article, O'Shea wrote, "Kirk paced it, in his own words, for he had no ruler/measure handy, and I believe this misrepresentation has been perpetuated enough; if they were foot-on-foot, as in heel directly to toe, I would accept 57 (or 58, whatever the precise figure was), but I think perpetuating this as fact any longer is doing a disservice to science."
Roper, in his comments on the final draft of this article, was even more conservative, writing, "there are no confirmed records of giant squid longer than about 45 feet [Script error: No such module "convert".] total length. Most are in the 25–35-foot [Script error: No such module "convert".] range. I have examined specimens in museums and laboratories around the world—perhaps a 100 or so—and I believe the 60-foot number comes from fear, fantasy, and pulling the highly elastic tentacles out to the near breaking point when they are measured on the shore or on deck."
Largest reported animals
Paxton (2016a) investigated the maximum size of Architeuthis by performing a statistical analysis using data from literature records of giant squid specimens. He selected what he regarded as the largest size records for each of mantle length (ML), standard length (SL), and total length (TL). Paxton's study has been criticised by giant squid experts, who have called into question the reliability of some of the selected literature records.[58]
For mantle length, Paxton (2016a:83) considered the Script error: No such module "convert". reported by Dell (1952:98) as the "longest measured", though "more reliably" the Script error: No such module "convert". ML specimen from Lyall Bay, New Zealand, documented by Kirk (1880:312).Template:Refn Paxton added: "A Script error: No such module "convert". specimen from Mauritius is often mistakenly cited but consultation of the primary paper (Staub, 1993) reveals an ill-defined length which is clearly not ML." The greatest measured ML of a giant squid recovered from a sperm whale is either the Script error: No such module "convert". reported by Keil (1963:320) (though Paxton writes: "the account is confused and the 2.4 m figure probably refers to the head and ML combined") or the Script error: No such module "convert". of a specimen that had been swallowed whole off the Azores, detailed by Clarke (1955:589) and Clarke (1956:257). The "longest visually estimated" ML, according to Paxton, is the c.Script error: No such module "Check for unknown parameters". Script error: No such module "convert". of a specimen apparently observed in the North Atlantic off Portugal, attributed to a personal communication with T. Lipington. A more modest Script error: No such module "convert". ML is also given, based on a sighting in the Indian Ocean sourced to the TV documentary of Lynch (2013).
For standard length (excluding the tentacles), Paxton (2016a:83) cited the Script error: No such module "convert". of the "Three Arms specimen" documented by Verrill (1880a:192) as the "longest measured". Among specimens recovered from sperm whales, the longest "definitely measured" SL is the Script error: No such module "convert". reported by Clarke (1956:257) and the longest "visually estimated" SL is the c.Script error: No such module "Check for unknown parameters". Script error: No such module "convert". attributed to a photograph of a sperm whale with giant squid remains in its jaws,[110] though Paxton conceded that it is "[n]ot clear how much/what portion of body was eaten". For the "longest visually estimated", more extreme supposed SLs of c.Script error: No such module "Check for unknown parameters". Script error: No such module "convert". and c.Script error: No such module "Check for unknown parameters". Script error: No such module "convert". are cited to Starkey (1963) and Ellis (1998a:246), respectively (the latter an eyewitness account by Dennis Braun). Paxton treated these last two size estimates as SLs as opposed to TLs because "squid do not generally leave their tentacles exposed except when grabbing prey and this appears to be the case for Architeuthis".
For total length, Paxton (2016a:83) considered three records as candidates for the "longest measured": the Script error: No such module "convert". specimen of Berzin (1972:199), the Script error: No such module "convert". specimen described by Kirk (1888) as Architeuthis longimanus—a strangely proportioned animal that has been much commented onTemplate:Refn—and the Script error: No such module "convert". "Thimble Tickle specimen" reported by Verrill (1880a:191), which is often cited as the largest giant squid ever recorded.Template:Refn Of the last one, Paxton wrote: "Sometimes mistakenly cited as Script error: No such module "convert". but the source is clear that it is 55 ft long." The first two records, particularly that of Berzin, are more questionable, as Paxton explained:
The accuracy of the two longest measured TLs of 19 and 16.81 m from a specimen found in the gut of a sperm whale from the Indian Ocean and from the specimen from New Zealand in 1887, respectively, should also be questioned but again are certainly not impossible. The New Zealand specimen (named Architeuthis longimanus Kirk, 1888) clearly has the largest ratio of TL to ML ever known in Architeuthis [...] which led [O'Shea & Bolstad, 2008] to suggest that the length was paced out and/or there was extensive post-mortem stretching. However, a re-reading of the original paper suggests that the specimen, although initially paced out, was actually measured, nevertheless the TL is at the edge of the 99.9% prediction interval range [...] and so it was certainly an unusual specimen. Berzin's (1972) Indian Ocean claim is suspect because of the roundness of the figure, the lack of detailed measurements and because in an associated photo, the mantle (whose length was not given) does not look very large compared to the men in the image. Consequently the measurement, if accurate, would represent another animal with very long tentacles.[111]
However, as Paxton (2016a:86) pointed out, the genetic analysis of Winkelmann et al. (2013)—which concluded that there is likely a single, globally-distributed species of Architeuthis—did not encompass these two specimens, and it is therefore possible that there exists a second, as yet unsampled, giant squid species with proportionately longer tentacles.
The Script error: No such module "convert". total length of the Berzin specimen was later confirmed to be erroneous; according to Valentin Yukhov, who was involved in the specimen's discovery, it should have read Script error: No such module "convert"..[113] The misprint was reproduced in the English translation published the following year and was later propagated in a number of papers on giant squid.[113] With the Berzin specimen not being as large as originally reported, the longest giant squid recovered from a sperm whale is the Script error: No such module "convert". TL individual recorded by Clarke (1956:257) (this specimen also has the longest confirmed ML and SL of any giant squid from a sperm whale).[114] Paxton considered the "longest visually estimated" TL to be the Script error: No such module "convert". published by Murray (1874:121), from an eyewitness account by fisherman Theophilus Picot, who claimed to have struck the floating animal from his boat, causing it to attack. Picot managed to hack off one of its tentacles, which was subsequently examined by a number of authors.[115]
Perhaps the largest of all recorded giant squid specimens was the one found floating at the surface off Saint-Gilles, Réunion, on 4 March 2016.[113] Although due to its great size the specimen could not be retrieved in its entirety, the head and arm crown were saved. Crucially, this meant the beak could be measured to estimate the mantle length and total length of the specimen. Using different allometric scaling equations,Template:Refn the lower rostral length of the beak, at Script error: No such module "convert"., gave an estimated dorsal mantle length of Script error: No such module "convert". and this, in turn, was used to estimate the total length at Script error: No such module "convert"..[113]
Supposed sucker scars
More extreme and outlandish giant squid size claims—belonging firmly in the realm of cryptozoology—have appeared in the works of authors such as Bernard Heuvelmans, Willy Ley, and Ivan T. Sanderson.[116] The existence of these gargantuan squids is often supported by reference to the giant circular scars sometimes found on sperm whales, which are assumed to have been inflicted by the suckers of struggling giant squid. Sometimes these claims are accompanied by extrapolations of body size based on the isometric upscaling of a "typical" giant squid.[117] However, such scars are not necessarily of squid origin and may instead represent fungal growths or bite marks, with sea lampreys (Petromyzon marinus) being one possible source.[118] Even in the case of genuine giant squid sucker marks it is possible that subsequent skin growth has enlarged them well beyond their original dimensions.[119]
Nevertheless, claims of enormous sucker scars are widespread in the literature. Richard Ellis collected some of "the more egregious examples" in his book, The Search for the Giant Squid.[121] These include the claim of Dozier (1976) that "an ordinary giant squid of 50 feet [Script error: No such module "convert".] leaves teeth-ringed sucker marks measuring between three and four inches [Script error: No such module "convert".] across on a whale, but sperm whales have been captured with tentacle marks 18 inches [Script error: No such module "convert".] across." L. Harrison Matthews's monographic treatment of the sperm whale, published in 1938, includes the following: "Nearly all male Sperm whales carry scars caused by the suckers and claws of large squids, scars caused by suckers up to 10 cm. [Script error: No such module "convert".] in diameter being common. The claw marks take the form of scratches 2–3 m. [Script error: No such module "convert".] in length, and appear to be of more frequent occurrence than sucker marks".[122] Ellis (1998a:142) wrote that this 10 cm figure is "so much larger than any other recorded sucker dimensions that one suspects some sort of error, either in measuring or in transcription."
The subject was covered in some detail by Wood (1982:192):
Measurements of Script error: No such module "convert"., Script error: No such module "convert". and even Script error: No such module "convert". have been conjectured for giant squids from the size of sucker marks found on the skins of captured sperm whales, but it is dangerous to place too much reliance on this evidence. Verrill says the largest suckers on the tentacles of a Script error: No such module "convert". long specimen measured 1<templatestyles src="Fraction/styles.css" />1⁄4 in [Script error: No such module "convert".] in diameter, and those on a 52-footer [Script error: No such module "convert".] about Script error: No such module "convert".. Daniel (1925), however, examined sucker marks on the head of one cachalot which measured 3<templatestyles src="Fraction/styles.css" />1⁄2 in [Script error: No such module "convert".] across, and others measuring up to Script error: No such module "convert". in diameter have been found on the skins of sperm whales captured in the North Atlantic. Ivan Sanderson (1956) goes even further and claims that sucker marks over Script error: No such module "convert". have been found on the heads of cachalots, but he does not explain how the poor whales managed to escape from the clutches of such colossi!
The general consensus of opinion is that exceptionally large sucker marks, i.e. over Script error: No such module "convert". in diameter, are old scars that have increased in size as the sperm whale grew.
Perhaps the most extreme published claim, ridiculed by Ellis (1998a:142), appeared in Willy Ley's 1959 book, Exotic Zoology: "Toothed whales, vomiting in death struggle, have shown evidence of still larger kraken; in one case a 6-foot [Script error: No such module "convert".] piece of tentacle, with a diameter of 2 feet [Script error: No such module "convert".; emphasis in original], has been claimed. Another claim goes for marks on the skin of such a whale, looking like the mark of a sucking disk over 2 feet [Script error: No such module "convert".] in diameter".[123]
Marine biologist Frederick Aldrich, who personally examined more than a dozen giant squid specimens, wrote that his largest specimen from Newfoundland bore tentacular suckers "approximately two inches [Script error: No such module "convert".] in diameter" but that "[s]uckers and their toothed armament of over twelve inches [Script error: No such module "convert".] in diameter have been found in the stomachs of sperm whale as indigestible wastes".[124] This led him to entertain the idea of giant squid over Script error: No such module "convert". long,Template:Refn and even to suggest a binomial name for this super-sized species, were it ever to be discovered: Architeuthis halpertius.[124]
By comparison, giant squid suckers normally reach a maximum diameter of only a few centimetres. Based on a detailed examination of a number of large specimens from New Zealand waters, Förch (1998:55) wrote that "[t]he largest suckers [...] on the sessile arms are a very constant Script error: No such module "convert". in external diameter". In giant squid the largest suckers of all are found on the central portion of the tentacular club, called the manus, and among the specimens examined by Förch (1998:53) these reached a maximum diameter of Script error: No such module "convert".. Clarke (1980) wrote: "I have not yet seen conclusive evidence to suggest that sucker scars are larger than Script error: No such module "convert". across".[125] According to Roper & Boss (1982:97), the largest suckers of the tentacular clubs reach Script error: No such module "convert". in diameter.
Mass estimates
It is now accepted that the giant squid has a maximum mass of several hundred kilograms,[127] but the literature is rife with claims of much greater weights. Clarke (1966), for example, put the mass of the largest giant squid specimens at around Script error: No such module "convert"..[128] Similarly, Richard Ellis wrote: "Where [giant] squid carcasses have actually been weighed, it appears that the longest ones—in the 50-foot [Script error: No such module "convert".] range, for example—weigh about a ton [Script error: No such module "convert".]."[129] Much greater estimates of giant squid mass can be found in, for example, Natural History of Marine Animals by MacGinitie & MacGinitie (1949): "two arms of Architeuthis that were Script error: No such module "convert". long were found, and if one reconstructed a body [...] the squid to which these arms belonged was Script error: No such module "convert". in diameter and Script error: No such module "convert". long, with an overall measurement of Script error: No such module "convert".. It would have weighed about 42<templatestyles src="Fraction/styles.css" />1⁄2 tons [Script error: No such module "convert".]." They added that a Script error: No such module "convert". specimen, such as the one reported from Thimble Tickle,Template:Refn "would have weighed 29<templatestyles src="Fraction/styles.css" />1⁄4 or 30 tons [Script error: No such module "convert".] including the tentacles—a truly noble animal, being a little more than one-fifth the weight of the largest whale and larger than the whale sharks and basking sharks, the largest of all fishes".[130] Ellis characterised these estimates as "unfounded exaggerations".[129] In the revised edition of Natural History of Marine Animals, published in 1968, the authors reduced their estimate to less than 8 tonnes.[131]
Bernard Heuvelmans believed that "there must be Architeuthis weighing more than 5 tons, and some even larger ones which must weigh between 2 and 27 tons, the normal weight being around 8 tons. There are good reasons to believe that there may even exist specimens twice as long as that of Thimble Tickle, which, depending upon their girth, might have weighed between 16 and 216 tons, but more likely around 64 tons."[132] Ellis, who considered these estimates "utterly ridiculous", wrote:
Heuvelmans commits a fundamental error in calculating the weight of some of these monsters when he writes that "the density of living creatures is only slightly higher than that of water ... a decimetre of living flesh weighs about as much as a litre of water." That may be true for some other living creatures, but the flesh of Architeuthis, saturated with ammonium chloride, is lighter than water, and the giant squid is neutrally buoyant. (This is believed to be the reason that dead or dying squid are found floating at the surface or washed up on the beach.) His assumption, therefore, that the 55-foot-long [Script error: No such module "convert".] Thimble Tickle squid would have "probably weighed near 24 tons" is patently erroneous.[133]
On the subject of the Thimble Tickle specimen's mass, Wood (1982:190) referred to the work of Soviet zoologist and writer Igor Akimushkin:
According to Dr Igor Akimushkin (1965), the Russian teuthologist, a Script error: No such module "convert". long giant squid will weigh 1 tonne [Script error: No such module "convert".] if the head, mantle and arms combined make up half the total length. Since there is a cubic relationship between the linear dimensions of Architeuthis and its volume or weight, this means the Thimble Tickle monster must have scaled about 2.8 tonnes [Script error: No such module "convert".] (i.e. the weight of a large bull hippopotamus), although 2 tonnes [Script error: No such module "convert".] is probably a more realistic figure.
Giant Pacific octopus
The maximum size of the giant Pacific octopus (Enteroctopus dofleini) has long been a source of debate in the scientific community, with dubious reports of specimens weighing hundreds of kilograms.
Largest reported animals
In 1885, reporting on the longest octopus specimen reliably recorded up to that point, renowned malacologist William Healey Dall wrote:
In 1874 I speared an octopus in the harbor of Iliuliuk, Unalashka, which was afterward hung, by a cord tied around the body immediately behind the arms, to one of the stern davits of the coast survey vessel under my command. As soon as the animal died and the muscles relaxed, I noticed that the tips of the longer tentacles just touched the water. On measuring the distance with a cord, I found it to be sixteen feet [Script error: No such module "convert".], giving the creature a spread from tip to tip of the longest pair of arms, of not less than thirty-two feet [Script error: No such module "convert".]. The arms toward the tips were all exceedingly slender, but rather stout toward the body, which was somewhat over a foot [Script error: No such module "convert".] long. The largest suckers were two and a half inches [Script error: No such module "convert".] in diameter; the whole creature nearly filled a large washtub. Parts of this specimen are now in the U. S. national museum.[134]
In an article for the National Marine Fisheries Service summarising knowledge on the giant Pacific octopus, High (1976:17–18) wrote:
Several octopuses in excess of 100 pounds [Script error: No such module "convert".] have been encountered and captured. Much larger ones have been reported but, like the Loch Ness Monster, these usually elude the careful photographer or scientist. Most octopuses weigh less than 70 pounds [Script error: No such module "convert".] with a stretched length of 15 feet [Script error: No such module "convert".] or less. Overall length between arms is not a suitable measure because of the animal's unusual elasticity.
In the late 1950s, I interviewed a Canadian commercial diver, Jock MacLean of Prince Rupert, B.C. He reported capturing an immense creature weighing 600 pounds [Script error: No such module "convert".] and measuring 32 feet [Script error: No such module "convert".] from arm tip to top. MacLean's photographs, unfortunately, were of poor quality. Smaller animals, to 400 pounds [Script error: No such module "convert".], were occasionally taken in his commercial octopus fishing endeavor.
Hochberg & Fields (1980:436) referenced the same specimen, writing: "the largest specimen on record with a total arm spread of 9.6 m [Script error: No such module "convert".] and a weight of 272 kg [Script error: No such module "convert".]". These figures are only estimates, however, as—contrary to the above quotation from High (1976:17–18)—it appears that this specimen was never collected and measured.[39] Murray Newman, director of the Vancouver Aquarium for 37 years, quoted Jock MacLean in his 1994 memoir, Life in a Fishbowl: "Next year [1957] in the same place, I saw one, maybe thirty-two feet [Script error: No such module "convert".] across and six hundred pounds [Script error: No such module "convert".]. Didn't go for her, though, no place to keep her!"[135] Nevertheless, the misleadingly precise metric conversion of 272 kg (for 600 lb) and the imprecise conversion of 9.6 m (for 32 ft; naively employing a conversion factor of 0.3 instead of 0.3048) gained wide acceptance as the maximum recorded dimensions of the giant Pacific octopus, and have been much repeated.Template:Refn
Jock MacLean is also reported to have captured a Script error: No such module "convert". animal with an arm span of Script error: No such module "convert". near Port Hardy, British Columbia, in March 1956.[136] Another giant specimen was caught off Santa Barbara, California, in 1945. Its weight was recorded as Script error: No such module "convert". and the surviving photograph makes it possible to estimate its total length at more than Script error: No such module "convert". and arm span at Script error: No such module "convert"..[80] In a book dedicated to the giant Pacific octopus, Cosgrove & McDaniel (2009:72) summarised knowledge on the species's maximum size as follows:
The specimen William Dall speared in 1885 [sic] at Iliuliuk had the largest radial span of any giant Pacific octopus ever measured. Jock MacLean's 1956 Port Hardy behemoth was the biggest ever weighed. The Santa Barbara specimen photographed in 1945 was the second heaviest. It would appear that octopuses weighing as much as Script error: No such module "convert". and with radial spans of over Script error: No such module "convert". are within the realm of possibility, but have never actually been documented by both measuring and weighing.
Possible diminution in size
No specimens approaching these extreme sizes have been reported since the middle of the 20th century. This lack of giant individuals is corroborated by commercial octopus fishers; none of those interviewed by Cosgrove & McDaniel (2009) had caught a single animal weighing more than Script error: No such module "convert". in the previous 20 years, among many thousands harvested over that period.[81] Octopus specialist Roland Anderson, a biologist with the Seattle Aquarium for more than 30 years, had long sought, unsuccessfully, to find a giant Pacific octopus weighing more than Script error: No such module "convert".. In an attempt to raise a truly enormous specimen, Anderson fed a number of captive males ad libitum. The heaviest animal (nicknamed 'Big') attained a peak weight of Script error: No such module "convert". and its largest suckers measured Script error: No such module "convert". in diameter.[137] Anderson suggested the species might now be maturing at a smaller size as a result of toxicant bioaccumulation, which could explain the lack of truly gigantic specimens in recent times. In particular, high concentrations of heavy metals and PCBs have been identified in the digestive glands of wild giant Pacific octopuses, likely originating from their preferred prey, the red rock crab (Cancer productus).[138] A preliminary study found that aquarium animals fed equal quantities of raw sea food and live C. productus (caught locally in Elliott Bay) matured at a smaller size, reached a lower maximum weight (Script error: No such module "convert". mean), and had higher concentrations of most heavy metals, than those fed solely on raw sea food (Script error: No such module "convert". mean, including the aforementioned Script error: No such module "convert". specimen).[139]
Largest species by measure
Cephalopod size can be quantified in various ways. Some of the most common size measures are covered below. The following four tables list only extant species; extinct taxa are treated separately at the end.
Mantle length
The list of largest cephalopods by mantle length is dominated by squids, with more than twenty species exceeding the largest-bodied octopuses and cuttlefish. The largest of all is the colossal squid (Mesonychoteuthis hamiltoni) with an estimated maximum mantle length of Script error: No such module "convert". (Roper & Jereb, 2010c:173). Even greater mantle lengths have historically been reported for the giant squid (Architeuthis dux), but these have been discredited (see O'Shea & Bolstad, 2008).
| Oegopsida (oegopsid squids) | |||
|---|---|---|---|
| Species | Maximum mantle length | References | Notes |
| Mesonychoteuthis hamiltoni (colossal squid) |
≈300 cm (estimate) | Roper & Jereb (2010c:173) | The largest complete specimen, a mature female recovered from the Ross Sea in February 2007, had a mantle length of around 2.5 m ([Anonymous], N.d.)—this being the maximum scientifically documented mantle length (Rosa et al., 2017)—and several other specimens near this size have been recorded. However, at 42.5 mm LRL, its beak is considerably smaller than the largest recovered from a sperm whale stomach (49 mm LRL; O'Shea & Bolstad, 2008; [Anonymous], N.d.). Maximum mantle lengths as great as 4 m have been estimated and reported in the past (Young, 2003; O'Shea & Bolstad, 2008). There are published claims of a very large section of gladius that would suggest a colossal squid measuring 5 m or more in mantle length (Wood, 1982:191; Bright, 1989:146).Template:Refn |
| Galiteuthis phyllura | ? 265–275 cm (estimate) | Nesis (1985); Nesis (1987:274); Ellis (1998a:149); Glaubrecht & Salcedo-Vargas (2004:65); Hoving & Robison (2017:47) | Estimate based on 40 cm long arm and 115 cm tentacle from the Sea of Okhotsk.Template:Refn Roper & Jereb (2010c:165) write: "this is considered a doubtful record that might refer to total length; probably the maximum mantle length is less than 400 to 500 mm". |
| Architeuthis dux (giant squid) |
240 cm (female) | Landman et al. (2004:686); O'Shea (2006); Roper & Shea (2013:114) | Dorsal mantle length of female captured off Tasmania, Australia, reported by Landman et al. (2004:686) and cited by Roper & Shea (2013:114). Questionable records of up to 500 cm ML can be found in older literature (Roper & Jereb, 2010a:121). O'Shea & Bolstad (2008) give a maximum mantle length of 225 cm based on the examination of more than 130 specimens, as well as beaks recovered from sperm whales (which do not exceed the size of those found in the largest complete specimens). Paxton (2016a) accepts a maximum recorded ML of 279 cm, based on the Lyall Bay specimen reported by Kirk (1880:312), but this record has been called into question as the gladius of this specimen—which should approximate the mantle in length—was said to be only 190 cm long (Greshko, 2016).Template:Refn |
| Onykia robusta (robust clubhook squid) |
200 cm | Norman (2000:174); Bolstad (2008:107); Okutani (2015b) | Kubodera et al. (1998) give a maximum of at least 161.5 cm ML. The largest specimen seen by Bolstad (2008:107) had a mantle length of 197 cm (USNM 816872; specimen of indeterminate sex from Script error: No such module "Coordinates".). Verrill (1876:237) reported a specimen with a mantle length of Script error: No such module "convert". and a total length of Script error: No such module "convert". (excluding the ends of the tentacles, which had been destroyed). Nesis (1987:192) likewise gave a maximum mantle length of 230 cm, but Roper & Jereb (2010i:364) wrote that "this old record might be in error", with the species commonly growing to 160 cm ML. Previously known as Moroteuthis robusta (see Bolstad, 2008; Bolstad, 2010). |
| Megalocranchia maxima | 185 cm (female) | Kubodera & Horikawa (2005:210) | Size of female caught off Motobu Peninsula, Okinawa, Japan, identified as "Megalocranchia cf. maxima" (see Kubodera & Horikawa, 2005:223 for photograph). This species is listed under the name Megalocranchia fisheri in many older sources. Tsuchiya & Okutani (1993), Roper & Jereb (2010c:171) and Okutani (2015a) give maximum of 180 cm, and Norman (2000:158) gives the same for M. fisheri. This species may also be conspecific with Megalocranchia abyssicola (Glaubrecht & Salcedo-Vargas, 2004:65). |
| Taningia danae (Dana octopus squid) |
170 cm | Nesis (1982); Roper & Jereb (2010h:266) | The largest well documented specimen is a 160 cm ML mature female from the North Atlantic (Roper & Vecchione, 1993:449). |
| Dosidicus gigas (Humboldt squid) |
150 cm | Wormuth (1976:38); Norman (2000:165); Glaubrecht & Salcedo-Vargas (2004:54) | According to Wormuth (1976:38), specimens reaching 150 cm ML are "not uncommon" off Peru. Roper et al. (2010b:301) give a maximum mantle length of 120 cm for specimens off Chile and around 100 cm for northern populations, with a more typical mantle length of up to 50–80 cm. The review article of Nigmatullin et al. (2001)—based on c.Script error: No such module "Check for unknown parameters". 230 published papers on the species, in addition to other catch data—also gives a maximum mantle length of 120 cm. |
| Kondakovia longimana (giant warty squid) |
≈150 cm (estimate; female) | Bolstad (2008:171) | Estimated size of damaged female (NMV F109447; specimen with 21 mm LRL from Script error: No such module "Coordinates".). O'Shea (2003b) estimated maximum mantle length as probably exceeding 115 cm. Largest complete specimen measured 108 cm ML (Lynnes & Rodhouse, 2002:1087; Roper & Jereb, 2010i:366). |
| Mastigoteuthis cordiformis | 100 cm or more | Roper & Jereb (2010g:253) | Based on unpublished reports; largest verified ML is 70 cm (Roper & Jereb, 2010g:253). |
| Lepidoteuthis grimaldii (Grimaldi scaled squid) |
100 cm | Roper & Jereb (2010e:240) | |
| Myopsida (myopsid squids) | |||
| Species | Maximum mantle length | References | Notes |
| Loligo forbesi (long finned squid) |
93.7 cm | Maximum mantle length is 93.7 cm in males and 46.2 cm in females.[140][141] | |
| Octopoda (octopuses) | |||
| Species | Maximum mantle length | References | Notes |
| Haliphron atlanticus (seven-arm octopus) |
69 cm (female) | O'Shea (2002:1); O'Shea (2004a:9); Finn (2014a:227) | Mantle length of incomplete 2.90 m TL mature female, measured defrosted and wet, prior to fixing. Isolated beaks of comparable size to that of this specimen were recorded by Clarke (1986:247–248). The sexually dimorphic males reach a mantle length of over 10 cm (Finn, 2014a:227). |
| Enteroctopus dofleini (giant Pacific octopus) |
at least 60 cm | Norman (2000:214); Norman et al. (2014:124) | |
| Sepiida (cuttlefish) | |||
| Species | Maximum mantle length | References | Notes |
| Sepia apama (Australian giant cuttlefish) |
50 cm | Reid et al. (2005:68) | |
| Sepia latimanus (broadclub cuttlefish) |
50 cm | Reid et al. (2005:92) | |
| Sepia hierredda | <50 cm | Reid et al. (2005:88) | |
| Sepia officinalis (European common cuttlefish) |
49 cm | Reid et al. (2005:99) | |
| Sepia pharaonis (pharaoh cuttlefish) |
42 cm | Reid et al. (2005:107) | |
| Sepia lycidas (kisslip cuttlefish) |
38 cm | Reid et al. (2005:96) | |
| Sepia ramani | 37.5 cm | Reid et al. (2005:114) | |
| Vampyromorphida (vampire squid) – single extant species | |||
| Species | Maximum mantle length | References | Notes |
| Vampyroteuthis infernalis (vampire squid) |
13 cm | Nesis (1982); Norman & Finn (2014:269) | |
| Sepiolida (bobtail squids) | |||
| Species | Maximum mantle length | References | Notes |
| Austrorossia antillensis | 9 cm | Reid & Jereb (2005:192) | |
| Rossia pacifica | 9 cm (female) | Reid & Jereb (2005:185) | Males grow to 4.5 cm in mantle length. |
| Rossia macrosoma | 8.5 cm | Reid & Jereb (2005:184) | More typically the mantle length is 2.0–6.0 cm. |
| Neorossia caroli | 8.3 cm (female) | Reid & Jereb (2005:190) | Males grow to 5.1 cm in mantle length. |
| Spirulida (spirula) – single extant species | |||
| Species | Maximum mantle length | References | Notes |
| Spirula spirula (ram's horn squid) |
rarely exceeds 4.5 cm | Reid (2005:211) | |
Total length
The longest scientifically documented specimens belong to the giant squid, with a maximum total length of Script error: No such module "convert". (Roper & Shea, 2013:114). Despite its proportionally shorter tentacles, the colossal squid may rival the giant squid in total length, but the species's size limits are uncertain because only a handful of mature specimens have been recorded.
| Teuthida (squids) | |||
|---|---|---|---|
| Species | Maximum total length | References | Notes |
| Architeuthis dux (giant squid) |
14–15 m (female) | Roper & Shea (2013:114) | Based on a 40-year data set of more than 50 specimens, Roper & Shea (2013:114) suggest an average total length at maturity of 11 m and a "rarely encountered maximum length" of 14–15 m. Of the nearly 100 specimens examined by Roper, the largest was "46 feet (14 m) long" (Cerullo & Roper, 2012:22). O'Shea & Bolstad (2008) give a maximum total length of 13 m for females based on the examination of more than 130 specimens, measured post mortem and relaxed, as well as beaks recovered from sperm whales (which do not exceed the size of those found in the largest complete specimens). O'Shea estimated the maximum total length for males at 10 m (O'Shea, 2003a).
Older records of 18 m or more were likely exaggerated by stretching of the long feeding tentacles or resulted from inadequate measurement methods such as pacing (O'Shea & Bolstad, 2008; Roper & Shea, 2013:113). Paxton (2016a) performed a statistical analysis using literature records of giant squid specimens and concluded that "squid with a conservative TL of 20 m would seem likely based on current data", but the study has been heavily criticised by experts in the field (Greshko, 2016). |
| Mesonychoteuthis hamiltoni (colossal squid) |
approaching 9–10 m (estimate) | Roper & Jereb (2010c:173) | The maximum confirmed total length for this species is 6 m (Rosa et al., 2017). Two specimens of M. hamiltoni recovered from the stomachs of sperm whales between 1956 and 1957 off the South Shetland Islands and South Orkney Islands—both initially identified as Architeuthis—reportedly measured around 10 and 12 m, respectively (Sweeney & Roper, 2001:56; see Korabelnikov, 1959:103 and Yukhov, 1974:62). Estimated maximum lengths as great as 12–14 m have appeared in the popular literature (see Anderton, 2007). |
| cf. Magnapinna (bigfin squid) |
≈7 m (estimate) | Vecchione et al. (2001a:2505); Vecchione et al. (2001b); Glaubrecht & Salcedo-Vargas (2004:67); Roper & Jereb (2010f:247) | Estimate based on specimen observed by commercial ROV operated from the oil-drilling ship Millennium Explorer in January 2000, Mississippi Canyon, Gulf of Mexico (Script error: No such module "Coordinates".), at a depth of 2195 m (Vecchione et al., 2001b). Bolstad (2003) gives an estimate of at least 8 m TL for the largest observed specimen. |
| Asperoteuthis acanthoderma | 5.5 m (+) | Tsuchiya & Okutani (1993) | Total length of immature specimen measuring 0.45 m ML. Much larger specimens of up to 92 cm ML are known (see Kubodera & Horikawa, 2005:223 for photograph). |
| Onykia robusta (robust clubhook squid) |
Script error: No such module "convert". (+) | Verrill (1876:237) | Total length of specimen missing ends of tentacles, with a mantle length of Script error: No such module "convert". according to Verrill (1876:237). Glaubrecht & Salcedo-Vargas (2004:66) give maximum total length of 4–6 m. Previously known as Moroteuthis robusta (see Bolstad, 2008; Bolstad, 2010). |
| Galiteuthis phyllura | ? over 4 m (estimate) | Nesis (1985); Ellis (1998a:149); Glaubrecht & Salcedo-Vargas (2004:65) | Estimate based on 0.40 m long arm and 1.15 m tentacle from the Sea of Okhotsk.Template:Refn Roper & Jereb (2010c:165) cast doubt on the validity of this record. |
| Dosidicus gigas (Humboldt squid) |
possibly up to Script error: No such module "convert". | Clarke (1966:117); Glaubrecht & Salcedo-Vargas (2004:59) | Specimens from the northern hemisphere are much smaller, with those off the Californian coast reaching total lengths of less than 1.7 m (Glaubrecht & Salcedo-Vargas, 2004:59). Roper et al. (2010b:301) give maximum total length of close to 2.5 m for specimens off Chile. |
| Megalocranchia maxima | 2.7 m (+) (female) | Young & Mangold (2010) | Total length of 1.65 m ML female taken off Hawaii (see Young & Mangold, 2010 for photograph). Larger specimens of up to 1.85 m ML have been recorded, and these clearly exceed 2.7 m TL (see Kubodera & Horikawa, 2005:223 for photograph). |
| Taningia danae (Dana octopus squid) |
2.3 m (female) | Roper & Vecchione (1993:444) | Total length of mature female measuring 160 cm in mantle length, taken from frozen specimen. |
| Kondakovia longimana (giant warty squid) |
2.25 m (+) | Lynnes & Rodhouse (2002:1087) | Size of largest complete specimen (1.08 m ML), found floating at surface off South Orkney Islands (see also Carrington, 2000). Much larger specimens up to an estimated 1.5 m ML are known (Bolstad, 2008:171). |
| Octopoda (octopuses) | |||
| Species | Maximum total length | References | Notes |
| Enteroctopus dofleini (giant Pacific octopus) |
>6.1 m | Cosgrove (1987) | Norman et al. (2014:124) give the maximum total length as "more than 3 m". Questionable length records of up to 9.8 m can be found in the literature (see High, 1976:18). |
| Cirrina gen. et sp. indet. | over 4 m (estimate) | Voss (1988); Vecchione et al. (2008) | Estimate based on photographic record; finned octopods are known with certainty to reach at least 1.7 m in total length (Collins et al., 2001). |
| Haliphron atlanticus (seven-arm octopus) |
4 m (estimate; female) | O'Shea (2004a:9); Finn (2014a:227) | Estimate based on incomplete 2.90 m mature female, measured defrosted and wet, prior to fixing. Isolated beaks of comparable size to that of this specimen were recorded by Clarke (1986:247–248). Males are estimated to reach a total length of 21 cm (Finn, 2014a:227) and perhaps as much as 30 cm (Norman et al., 2002:733). |
| Vampyromorphida (vampire squid) – single extant species | |||
| Species | Maximum total length | References | Notes |
| Vampyroteuthis infernalis (vampire squid) |
≈30 cm | Norman & Finn (2014:269) | |
Mass
The heaviest known cephalopod, and the largest living invertebrate, is the colossal squid. The largest recorded specimen of this species, caught in the Ross Sea in 2007, weighed Script error: No such module "convert".. However, its beak is not the largest known from this species; even bigger colossal squid beaks have been recovered from the stomachs of sperm whales, indicating that this species can grow larger still.
| Teuthida (squids) | |||
|---|---|---|---|
| Species | Maximum mass | References | Notes |
| Mesonychoteuthis hamiltoni (colossal squid) |
495 kg (female) | [Anonymous] (N.d.); Guerra & Segonzac (2014:65); Rosa et al. (2017) | Weight of mature female specimen caught in February 2007, measured after thawing. This specimen was originally estimated to weigh 450 kg (Anderton, 2007). Several other specimens with weights in the hundreds of kilograms have been recorded. Beaks recovered from sperm whale stomachs indicate the existence of even larger specimens, perhaps weighing as much as 600–700 kg ([Anonymous], N.d.). |
| Architeuthis dux (giant squid) |
275 kg (female) | O'Shea (2003a); Grist & Jackson (2007:386); Guerra & Segonzac (2014:65) | Maximum size based on the examination of some 105 specimens by O'Shea (2003a), as well as beaks recovered from sperm whales (which do not exceed the size of those found in the largest complete specimens). Maximum weight for males has been estimated at 150 kg (O'Shea, 2003a; see also Grist & Jackson, 2007:386), though heavier specimens have occasionally been reported (see Deagle et al., 2005 for 190 kg specimen, Hofilena, 2014 for 163 kg specimen). Roper & Jereb (2010a:121) give a maximum weight of up to 500 kg, and "possibly greater". Discredited weights of as much as a tonne or more are not uncommon in older literature (O'Shea & Bolstad, 2008). |
| Taningia danae (Dana octopus squid) |
161.4 kg (female) | Roper & Jereb (2010h:266) | Weight of 160 cm ML mature female from North Atlantic. Specimen weighed prior to freezing (Roper & Vecchione, 1993:444). According to Roper & Jereb (2010h:266), the previously reported maximum weight of 61.4 kg (based on the same specimen) stems from a typographical error in the original paper of Roper & Vecchione (1993). This lower value was repeated by a number of subsequent authors, including Santos et al. (2001:355) and Kubodera et al. (2006:1029). |
| Onykia robusta (robust clubhook squid) |
50 kg | Roper et al. (1984); Roper & Jereb (2010i:364); Guerra & Segonzac (2014:65); Okutani (2015b) | Previously known as Moroteuthis robusta (see Bolstad, 2008; Bolstad, 2010). |
| Dosidicus gigas (Humboldt squid) |
50 kg | Nigmatullin et al. (2001:10); Roper et al. (2010b:301); [Anonymous] (N.d.) | Commonly reaches a maximum weight of around 20–30 kg (Roper et al., 2010b:301). In their introduction to the family Ommastrephidae, Roper et al. (2010b:269) give a maximum weight of 55–65 kg, but this is contradicted later in the same work by the 50 kg figure in the main species account. Guerra & Segonzac (2014:65) give a maximum weight of 90 kg. |
| Kondakovia longimana (giant warty squid) |
50 kg (estimate) | Guerra & Segonzac (2014:65) | Largest complete specimen, found floating at surface off South Orkney Islands, had a wet weight of 29 kg and a mantle length of 108 cm (Lynnes & Rodhouse, 2002:1087; see also Carrington, 2000), but a damaged female specimen with an estimated mantle length of around 150 cm is known (Bolstad, 2008:171). |
| Thysanoteuthis rhombus (diamondback squid) |
30 kg | Miyahara et al. (2006); Roper & Jereb (2010k:385) | Probably exceeds the recorded mass of 30 kg according to Roper & Jereb (2010k:385). |
| Ommastrephes bartramii (neon flying squid) |
20–25 kg (female) | Roper et al. (2010b:296) | Maximum size of specimens from North Atlantic and Southern Hemisphere (where males reach 2–2.2 kg). Females from the North Pacific are smaller (6 kg), but males may be larger (2–2.9 kg) (Roper et al., 2010b:296). |
| Megalocranchia maxima | Script error: No such module "convert". (+) | [Anonymous] (2015b); Mosendz (2015) | Mass of specimen found floating dead off Hawaii, estimated to measure at least Script error: No such module "convert". TL, tentatively identified as Megalocranchia fisheri. Larger specimens reaching and even exceeding 2.7 m TL have been recorded, though were apparently not weighed (see Kubodera & Horikawa, 2005:223; Young & Mangold, 2010). |
| Onykia robsoni (rugose hooked squid) |
11.1 kg (female) | Vecchione et al. (2011) | Weight of mature female (88.5 cm ML) caught in bottom trawl at 685–700 m depth over Chatham Rise (Script error: No such module "Coordinates".). Previously known as Moroteuthis robsoni (see Bolstad, 2008; Bolstad, 2010). |
| Octopoda (octopuses) | |||
| Species | Maximum mass | References | Notes |
| Enteroctopus dofleini (giant Pacific octopus) |
? >180 kg | Norman et al. (2014:124) | Cosgrove (1987) and Cosgrove & McDaniel (2009:69) gave a maximum confirmed weight of 71 kg for a live specimen collected in the mid-1960s (McClain et al., 2015). There exists a dubious record of a 272 kg specimen which is sometimes cited as the largest known (see High, 1976:18; Hochberg & Fields, 1980:436; Lewy, 2002:65), although it was never actually collected and weighed (Newman, 1994:66; McClain et al., 2015). Norman et al. (2014:124) accept a maximum weight of at least 180 kg, which approximates the 182.3 kg reported for a specimen caught off Santa Barbara, California, in 1945, of which photographic evidence survives (Cosgrove & McDaniel, 2009:67–69). No specimens approaching this size have been reported since the middle of the 20th century, with recent specimens very rarely exceeding 50 kg (Cosgrove & McDaniel, 2009:71). It is possible that the maximum size of the species has decreased over this period, perhaps due to bioaccumulation of toxicants (Anderson, 2003:3; Cosgrove & McDaniel, 2009:71). |
| Haliphron atlanticus (seven-arm octopus) |
75 kg (estimate; female) | O'Shea (2004a:9) | Estimate based on incomplete 61.0 kg mature female, measured defrosted and wet, prior to fixing. Isolated beaks of comparable size to that of the present specimen were recorded by Clarke (1986:247–248). |
| Sepiida (cuttlefish) | |||
| Species | Maximum mass | References | Notes |
| Sepia apama (Australian giant cuttlefish) |
>10.5 kg | Reid et al. (2005:68) | |
| Sepia latimanus (broadclub cuttlefish) |
10 kg | Reid et al. (2005:92) | |
| Sepia hierredda | >7.5 kg | Reid et al. (2005:88) | |
| Sepia lycidas (kisslip cuttlefish) |
5 kg | Reid et al. (2005:96) | |
| Sepia pharaonis (pharaoh cuttlefish) |
5 kg | Reid et al. (2005:107) | |
| Sepia officinalis (European common cuttlefish) |
4 kg | Reid et al. (2005:99) | |
Shell diameter
Nautiluses are the only extant cephalopods with a true external shell; in other groups the shell has been internalised or lost completely. Internal shells include the cuttlebones of cuttlefish, the gladii of squids and the vampire squid, the winged shells of cirrate octopods, and the spiral shells of Spirula. Additionally, females of the octopus genus Argonauta secrete a specialised paper-thin eggcase in which they reside, and this is popularly regarded as a "shell", although it is not attached to the body of the animal (see Finn, 2013).
Cephalopod shell diameter is of interest to teuthologists and conchologists alike. The Registry of World Record Size Shells, the most comprehensive publication on maximum shell size in marine molluscs, specifies that specimens "should be measured with vernier type calipers and should reflect the greatest measurable dimension of the shell in any direction including any processes of hard shell material produced by the animal (i.e. spines, wings, keels, siphonal canals, etc.) and not including attachments, barnacles, coralline algae, or any other encrusting organisms" (Pisor, 2008:14). Unlike most other measures of cephalopod size, shell diameter can be determined with a high degree of precision and usually leaves little room for ambiguity. For this reason it is usually recorded to the nearest one-tenth of a millimetre (Script error: No such module "convert".), as is standard in conchology.
When the Registry of World Record Size Shells changed ownership in 2008 it was launched as an online database in addition to its print publication. Subsequent rule changes meant that all records required photographic verification. Over time, older records for which photographic evidence could not be obtained were removed from the database. As a result, some records from older editions of the registry actually exceed the size of the current official record holders, sometimes by considerable margins. Where this has occurred, the largest recorded size across all editions is shown first and any discrepancies or competing records are noted thereafter. Where a reliable literature record surpasses all specimens ever included in the registry, this is given instead and the registry record(s) noted thereafter. Pisor (2008) was the fifth and final print edition of the registry published prior to the rule change, and Barbier et al. (N.d.) is the current, continuously updated online database. The registry only covers the shells of nautiluses and Spirula and the eggcases of Argonauta.
| Octopoda (octopuses) – all extant Argonauta species listed | |||
|---|---|---|---|
| Species | Maximum shell diameter | References | Notes |
| Argonauta argo (greater argonaut) |
300.0 mm | Pisor (2008:22); Barbier et al. (N.d.) | Pisor (2008:22) listed this size for a specimen from Australia (registered in 1991; in collection of SIO). Barbier et al. (N.d.) list exactly the same size for a specimen from the Philippines (year given as 1985; in private collection of Beals Marty). For a discussion of maximum shell size in this species, see Finn (2013:199). The largest literature record (and the only one to exceed the official world record size) appears to be the rough upper limit of Script error: No such module "convert". given by Webb (1945:13) for the species as a whole (Finn, 2013:199).
Under Argonauta cygnus, Pisor (2008:22) listed a 220.0 mm record for a specimen from western Mexico (acquired in 1995; in collection of SIO). The same specimen was previously listed under Argonauta pacificus (as A. pacifica) by Pisor (2005:12). Both A. cygnus and A. pacificus are considered synonyms of A. argo by Finn (2013) and Finn (2014b). |
| Argonauta nodosus (knobbed argonaut) |
292.0 mm | Pisor (2008:22) | Size of a specimen from South Australia (registered in 1977; in collection of AMNH). Barbier et al. (N.d.) list a record of 204.0 mm for a specimen from the "Tasmania area", Australia (year given as 2000; in private collection of B. Henke). For a discussion of maximum shell size in this species, see Finn (2013:167); a number of unconfirmed reports put the maximum size beyond 300 mm. |
| Argonauta hians (muddy argonaut) |
121.61 mm | Barbier et al. (N.d.) | Size of a specimen from the Gulf of Aqaba, Red Sea (year given as 1995; in private collection of Simon Weigmann). Pisor (2008:22) listed a record of 112.6 mm for a specimen from the Philippines (registered in 1988; in private collection of Victor Dan). For a discussion of maximum shell size in this species, see Finn (2013:186); none of the records discussed therein exceed the current world record specimen. |
| Argonauta boettgeriTemplate:Refn | 108.03 mm | Barbier et al. (N.d.) | Size of a specimen taken from the China Sea off Zhejiang Province by a local fisherman (year given as 2005; in private collection of Simon Weigmann). Pisor (2008:22) listed a record of 102.2 mm for a specimen from the Philippines (collected in 2005; in collection of Havelet Marine). Pisor (2005:12) listed a record of 67.0 mm for a specimen from Mozambique, which is the locus classicus of this species (registered in 2003; in private collection of Pete Stimpson). |
| Argonauta cornutusTemplate:Refn | 98.7 mm | Barbier et al. (N.d.) | Size of a specimen from western Mexico (year given as 1985; in collection of W. D. Schroeder). Pisor (2008:22) listed possibly the same specimen, also from western Mexico, at 98.6 mm (collected in 1999; in private collection of W. D. Schroeder). |
| Argonauta nouryi | 95.5 mm | Pisor (2008:22); Barbier et al. (N.d.) | Size of a specimen from California (collected in 1992; in collection of Havelet Marine). For a discussion of maximum shell size in this species, see Finn (2013:207); none of the records discussed therein exceed the current world record specimen (when including A. cornutus, which Finn treats as a synonym of A. nouryi). |
| Nautilida (nautiluses) – all extant species listed | |||
| Species | Maximum shell diameter | References | Notes |
| Nautilus pompilius pompilius (emperor nautilus) |
254.0 mm | Pisor (2008:121); Barbier et al. (N.d.) | Size of a specimen from Indonesia (registered in 2003; in private collection of Pete Stimpson), listed as N. p. pompilius. Hutsell et al. (1997:48) listed a 253.0 mm specimen, also from Indonesia (collected in 1983; in private collection of Cecelia Abbott). Harasewych & Moretzsohn (2010:632) give a maximum shell diameter of 268 mm for this species, but this is based on an erroneous record.Template:Refn
Under N. repertus (which is treated here in synonymy with N. p. pompilius; Jereb (2005:53) considered it a "questionable species"), Pisor (2005:93) listed a 230.0 mm record for a specimen from Indonesia (registered in 2000; in private collection of Pete Stimpson), Pisor (2008) did not include the taxon at all, while Barbier et al. (N.d.) list a record of 242.07 mm for a specimen from India (no year given; in private collection of Simon Weigmann). The largest albinistic N. p. pompilius is listed by Barbier et al. (N.d.) as a 175.0 mm specimen trawled at 400 m depth off Zamboanga in the Philippines (year given as 2013; in collection of Havelet Marine). |
| Nautilus stenomphalus (white-patch nautilus) |
239.39 mm | Barbier et al. (N.d.) | Size of a specimen from Timor Island, Indonesia (year given as 2009; in private collection of Simon Weigmann). Under N. pompilius f. stenomphalus, Pisor (2008:121) listed a maximum shell diameter of 221.0 mm for a specimen from the Philippines (no year given; in collection of Havelet Marine). |
| Nautilus belauensis (Palau nautilus) |
239 mm | Grulke (2016:76) | Grulke (2016:76) gives an adult shell size range of 180–239 mm, and a mean adult shell diameter of 200 mm. Jereb (2005:54) gives 226 mm as the maximum size for the species, with no reference to a particular specimen. Pisor (2008:121) and Barbier et al. (N.d.) list a record of 221.0 mm for a specimen from Babeldaob, Palau (year given as 1980; in collection of Havelet Marine). |
| Nautilus pompilius suluensis | 220.0 mm | Barbier et al. (N.d.) | Size of a specimen from the Philippines (year given as 2000; in private collection of Pete Stimpson). Pisor (2008:121) listed a maximum shell diameter of 148.0 mm for a specimen from the Philippines (registered in 2000; in private collection of Pete Stimpson). N. p. suluensis is a dwarf form from the Sulu Sea that has the smallest mean shell diameter of all known extant nautilus populations, at 115.6 mm (Dunstan et al., 2011). |
| Allonautilus scrobiculatus (crusty nautilus) |
215.0 mm | Pisor (2005:93) | Size of a specimen from the Philippines (registered in 2000; in private collection of Pete Stimpson), listed as Nautilus scrobiculatus. Pisor (2008) did not include this species at all. Barbier et al. (N.d.) list a record of 214.0 mm for a specimen from Indonesia (year given as 2013; in private collection of Pete Stimpson). |
| Nautilus macromphalus (bellybutton nautilus) |
180.62 mm | Barbier et al. (N.d.) | Size of a specimen from New Caledonia (year given as 2008; in private collection of Simon Weigmann). Pisor (2008:121) listed a maximum shell diameter of 180.0 mm for a specimen from New Caledonia (collected in 1995; in private collection of Kent Trego). |
| Allonautilus perforatus | around 180 mm | Jereb (2005:55); Grulke (2016:83) | Given as the maximum size for the species, with no reference to a particular specimen. Jereb (2005:55) considered A. perforatus a "[v]ery rare form of questionable validity". |
| Spirulida (spirula) – single extant species | |||
| Species | Maximum shell diameter | References | Notes |
| Spirula spirula (ram's horn squid) |
28.8 mm | [Anonymous] (2003c) | Size of a specimen from Samar Island, the Philippines (collected in 2003). Pisor (2008:139) and Barbier et al. (N.d.) list a record of 27.2 mm for a specimen from Phuket Island, Thailand (collected c.Script error: No such module "Check for unknown parameters". 2000; in collection of Havelet Marine; see [Anonymous], 2006 for online record). |
Extinct taxa
| Ammonoidea (ammonoids) | |||
|---|---|---|---|
| Species | Maximum shell diameter (length for heteromorphs) | References | Notes |
| Parapuzosia seppenradensis | 2–3.5 m (estimate) | Landois (1895:100); Landois (1898:27); Teichert & Kummel (1960:6); Summesberger (1979:128); Holland (1987:6); Kennedy & Kaplan (1995:21); Lewy (2002:66); frim et al. (2021) | Widely recognised as the largest ammonite specimen ever found (Payne et al., 2009:27; Grulke, 2014:124). Discovered in 1895 in a quarry in Seppenrade, Coesfeld, Germany, the original is on display at the Westfälisches Museum für Naturkunde in Münster. Estimate based on lectotype measuring 1.742 m in diameter (Kennedy & Kaplan, 1995:21) with an incomplete living chamber, assuming living chamber took up one-fourth of the outer whorl. Teichert & Kummel (1960:6) suggested an even larger shell diameter of around 3.5 m for this specimen, assuming the body chamber extended for three-fourths to one full whorl. Landois (1898:27) estimated the total live weight at 1456 kg, of which the shell would constitute 705 kg. The fossil itself weighs around 3.5 tonnes (Beer, 2015). A smaller specimen of 1.36 m was found in the same quarry some years earlier (Beer, 2015). In 1971 a portion of an ammonite possibly surpassing the Seppenrade specimen was reportedly found in a brickyard in Bottrop, western Germany (Beer, 2015). In 2021, diameter of 2 m is estimated for the largest specimen.[142] |
| Parapuzosia bradyi | >1.8 m (estimate) | Larson et al. (1997:44); Lewy (2002:66) | Largest known North American ammonite. Estimate based on incomplete specimen measuring 1.37 m in diameter (missing at least half a whorl of the body chamber). |
| Peltoceratinae gen. et sp. indet. | 1.78 m (estimate) | Poulton (1989) | Estimate based on small portion of outer whorl measuring 1.2 m along the venter and subtending a chord of 1.13 m. The estimate is based on the ultimate whorl height/diameter ratio of "Titanites" occidentalis (about 35%), and assumes a constant rate of expansion. More crude calculations give a circular diameter of 2–2.4 m (best fit of the specimen's outline to a curve yields 2.16 m estimate). |
| Eopachydiscus sp. | 1.67 m | Grulke (2014:125) | This specimen, from the Albian Duck Creek Formation of Texas, has been exhibited at the Tucson Fossil Show and in a New York auction. |
| Pachydesmoceras cf. pachydiscoide | 1.65 m (estimate) | Kin & Niedźwiedzki (2012:19) | Estimate based on 0.98 m diameter specimen representing an apparently complete phragmocone (previously referred to Lewesiceras peramplum or Parapuzosia). A more complete and therefore larger specimen (1.18 m diameter) consisting of a complete phragmocone and near-complete body chamber is also known (Kin & Niedźwiedzki, 2012:17). |
| Lytoceras taharoaense | 1.5 m | Stevens (1978a:3); Stevens (1978b:2); Stevens (1979a:33); Stevens (1979b:6); Stevens (1979c:166); Stevens (1985:153); Grulke (2014:126) | Size based on essentially complete shell with only some damage to the aperture. |
| Mesopuzosia mobergi | <1.5 m | Kin & Niedźwiedzki (2012:19) | |
| Parapuzosia austeni | <1.5 m | Kin & Niedźwiedzki (2012:19) | Puzosia mayoriana is a synonym. |
| Moutoniceras sp. | 1.47 m [heteromorph] | Grulke (2014:126) | In private collection of Wolfgang Grulke, according to whom it is likely the largest heteromorph ammonite ever found (Grulke, 2014:126). Originating from Morocco it is displayed in part of the original rock matrix with sympatric Gassendiceras heteromorphs. Its unrolled shell length would have exceeded 3 m (Grulke, 2014:126). A specimen claimed to be very slightly larger at 1.48 m was auctioned in September 2015 ([Anonymous], 2015a). |
| Parapuzosia bosei | 1.45 m | Scott & Moore (1928:276); Lewy (2002:66) | From the Austin Chalk of the Rio Grande region, Texas. The largest known specimen was reported by Scott & Moore (1928:273) to be Script error: No such module "convert". in diameter and "impossible to extract from its matrix". The authors found "[m]any others only slightly smaller", of which three were collected in 1928 and deposited at Texas Christian University (Scott & Moore, 1928:273–274). |
| Parapuzosia americana | 1.37 m (estimate) | Scott & Moore (1928:276) | From the Austin Chalk of the Rio Grande region, Texas. |
| Corbinites occidentalis | 1.37 m | Frebold (1957:66); Westermann (1966) | Originally assigned to the genus Titanites.[143] Size based on specimen consisting of an imprint and part of the last whorl preserved as an internal mould. |
| Diplomoceras maximum | >1 m [heteromorph] | Olivero & Zinsmeister (1989) | |
| Tropaeum imperator | almost 1 m | Grulke (2014:126) | Largest ammonite known from Australia. Grulke (2014:126) writes: "No exact size is available but it could be almost 1 m across". |
| Belemnoidea (belemnoids) | |||
| Species | Maximum rostrum measurements | References | Notes |
| Megateuthis sp. | 0.7 m TL (Dvms: 30 mm; Dvma: 50 mm) | Schlegelmilch (1998:1); Weis & Mariotti (2007:166); Iba et al. (2015:23–24) | Megateuthis elliptica is "the longest belemnite species known", with rostra from the Humphriesianum Zone in Rumelange and Luxembourg reaching 60–70 cm (Weis & Mariotti, 2007:166). The whole animal is estimated to have been 3–5 m long (Eyden, 2003a). Fuchs and Stinnesbeck (2021) estimated total mantle length of 2.22 m.[144] |
| Belemnitina gen. et sp. indet. | ? TL (Dvms: 30 mm; Dvma: ?) | Iba et al. (2015:23) | Known from a single incomplete rostrum (TCSM-J1-0001) from the Pliensbachian Teradani Formation in Teradani, Toyama Prefecture, Japan. The specimen is missing the apical and alveolar regions and comprises only the middle (stem) region of the rostrum. It measures 45 mm in total length by 30 mm and 25 mm across at the anterior and posterior ends, respectively. Iba et al. (2015:23) wrote: "In the Belemnitina, the diameter of the alveolar region is generally larger than those of the apical and stem regions. Thus maximum rostrum diameter of the Teradani specimen is estimated to reach much more than 30 mm." |
| Acroteuthis sp. | ? TL (Dvms: 39 mm; Dvma: 42 mm) | Iba et al. (2015:23) | One of "the largest belemnites ever observed", with a rostrum comparable to that of the indeterminate belemnitinid from Teradani. |
| Pachyteuthis sp. | ? TL (Dvms: 39 mm; Dvma: 40 mm) | Iba et al. (2015:23) | One of "the largest belemnites ever observed", with a rostrum comparable to that of the indeterminate belemnitinid from Teradani. |
| Belemnitina gen. et sp. indet. | ? TL (Dvms: ?; Dvma: >33 mm) | Iba et al. (2015:23) | From the Hettangian Niranohama Formation of northeastern Japan. One of "the largest belemnites ever observed", with a rostrum comparable to but likely slightly smaller than that of the indeterminate belemnitinid from Teradani. |
| Nautiloidea (nautiloids) | |||
| Species | Maximum shell length | References | Notes |
| Endoceras giganteum | 5.733 m (estimate) | Klug et al. (2015:270) | Estimate based on incomplete 3-metre-long shell deposited at the Museum of Comparative Zoology, Harvard University. Teichert & Kummel (1960:5) assumed length of 8 m based on body chamber-to-phragmocone ratio of 1:2 and wrote that this was likely "the largest fragment of an endoceroid cephalopod on display anywhere in the world". However, Klug et al. (2015:270) estimated the total length of the complete shell at 5.733 m, with a volume of 158.6 litres. From the Katian of New York (Klug et al., 2015:270). The published literature includes unconfirmed reports of even larger endocerids. Frey (1995) mentioned length of 6 m as maximum size for genus Cameroceras, although this author support theory that some large specimens of Endoceras belong to Cameroceras instead. |
| Endoceras proteiforme | Script error: No such module "convert". | Clarke (1897:778); Teichert & Kummel (1960:1) | Size based on "entire shells" (Clarke, 1897:778). |
| Rayonnoceras solidiforme | 2.8 m (estimate) | Klug et al. (2015:270) | From the Visean of Arkansas. Shell volume estimated at 62.5 litres. |
| Deiroceras hollardi | 2.6 m (estimate) | Klug et al. (2015:270) | From the early Emsian of "Jebel Mdouar". Shell volume estimated at 68.3 litres. |
| Cameroceras turrisoides | c. 2 m (estimate) | Kröger & Ebbestad (2014) | From the Katian of Sweden. Estimated after maximum diameter (165 mm).[145][146] |
| Actinocerida gen. et sp. indet. | 1.911 m (estimate) | Klug et al. (2015:270) | From the Llandovery of Gotland. Shell volume estimated at 8.9 litres. |
| Orthocerida gen. et sp. indet. | 1.783 m (estimate) | Klug et al. (2015:270) | From the Ludlow of Gotland. Shell volume estimated at 4.1 litres. |
| Ormoceras TUG 1308-1 | 1.72 m (estimate) | Klug et al. (2015:270) | From the Sandbian of Estonia. Shell volume estimated at 2.7 litres. |
| Ormoceras giganteum MB.C.11940 | 1.71 m (estimate) | Klug et al. (2015:270) | From the Darriwilian. Shell volume estimated at 2.7 litres. |
| Lambeoceras lambii | 1.405 m (estimate) | Leith (1942:130); Teichert & Kummel (1960:4) | Estimate based on incomplete 1.155 m long shell. |
| Orthoceras regarium | 1.39 m (estimate) | Klug et al. (2015:270) | From the Wenlock of Joachimsthal.Template:Refn Shell volume estimated at 5.1 litres. |
| Temperoceras aequinudum | 1.333 m (estimate) | Klug et al. (2015:270) | From the Lochkovian of "Ouidane Chebbi". Shell volume estimated at 9.2 litres. |
| Zeravshanoceras priscum | 1.299 m (estimate) | Klug et al. (2015:270) | From the Eifelian. Shell volume estimated at 1.6 litres. |
| Ordogeisonoceras amplicameratum | >1.25 m | Frey (1995:40) | Shell diameter up to 10.5 cm. Originally described as Orthoceras amplicameratum. Orthoceras ludlowense is considered a synonym. |
| Cameroceras hennepini | <Script error: No such module "convert". (estimate) | Clarke (1897:779) | Size estimate based on "the most complete of the fragments which represent it". |
| Actinoceras vaughanianum | 1.198 m (estimate) | Klug et al. (2015:270) | From the Serpukhovian of Oklahoma. Shell volume estimated at 8.7 litres. |
| Polygrammoceras? cf. P. sp. A | 1.13 m (estimate) | Frey (1995:69) | Estimate based on a "single, very large fragment of a phragmocone". Shell diameter to 9.0 cm. |
| Plagiostomoceras sp. | 1.1 m (estimate) | Klug et al. (2015:270) | From the Givetian of Onondaga, New York. Shell volume estimated at 0.0052 litres. |
| Endoceras decorahense | 1.06 m (estimate; phragmocone only) | Miller & Kummel (1944); Teichert & Kummel (1960:2) | Size estimate based on two portions of an internal mould of the phragmocone, measuring 62.5 cm and 32 cm, with an estimated missing middle section of 11.5 cm. |
| Proterovaginoceras incognitum | 1 m (estimate) | Klug et al. (2015:270) | From the Dapingian of Jämtland, Sweden. Shell volume estimated at 0.8 litres. |
| Teuthida (squids) | |||
| Species | Maximum mantle length | References | Notes |
| Yezoteuthis giganteus | ≈1.7 m (estimate) | Tanabe et al. (2006:142) | Size estimate based on preserved upper jaw measuring 97.0 mm in maximum length, similar to that of the largest giant squid (Architeuthis dux). Tanabe et al. (2006:143) wrote that this species "appears to be the largest fossil coleoid ever described". |
| Octopodiformes | |||
| Species | Maximum mantle length | References | Notes |
| Enchoteuthis melanae | up to 2 m (estimate) | Eyden (2003b); Fuchs et al. (2020) | Total length estimated to be up to 3 m. Tusoteuthis longa is likely to be invalid, and largest specimen should belongs to E. melanae.[147] |
| Leptotheuthis | 1.3 m (gladius length) | Fuchs and Stinnesbeck (2021) | Reference spells "Leptotheuthis".[144] |
| Eromangateuthis soniae | 1.2 m (gladius length) | Fuchs (2019) | Size based on gladius from Queensland, Australia.[148] A second gladius measuring more than a metre and showing possible evidence of predation by Kronosaurus is also known (Eyden, 2003b). |
| Trachyteuthis | 0.8 m (gladius length) | Fuchs and Stinnesbeck (2021) | Size given for Early Cretaceous species.[144] |
| Nanaimoteuthis hikidai | ≈0.7 m (estimate) | Tanabe et al. (2015) | Estimated from hood length of lower jaw with proportion of vampire squid.[95] Authors also estimated mantle length from fossil vampyromorphs unofficially, resulting ≈1.6 m mantle length.[149] |
| Nanaimoteuthis yokotai | ≈0.54 m (estimate) | Tanabe et al. (2010) | Estimated from hood length of lower jaw with proportion of vampire squid.[150] |
| Sister group of decapodiformes | |||
| Species | Maximum mantle length | References | Notes |
| Longibelus matsumotoi (?) | 91.1-98.9 cm (estimate) | Tanabe and Misaki (2023) | Estimated from rostral length of lower jaw, with proportion of Spirula, giant squid and colossal squid.[96] |
Anatomical superlatives
Eyes
The giant and colossal squids have the largest recorded eyes of any living animal, with a maximum diameter of at least Script error: No such module "convert". and a Script error: No such module "convert". pupil.[2] This is three times the size of the largest fish eyes—up to Script error: No such module "convert". in swordfish—and more than twice the diameter of the largest whale eyes—up to Script error: No such module "convert"., Script error: No such module "convert"., and Script error: No such module "convert". in blue, humpback, and sperm whales, respectively—which are the largest among vertebrates.[2] A large colossal squid caught in 2014 and dissected at the Museum of New Zealand Te Papa Tongarewa had eyes some Script error: No such module "convert". across.[152] There are unconfirmed reports from the 19th century of giant squid eyes up to Script error: No such module "convert". across.[153] Only the extinct ichthyosaurs are known to have approached these dimensions,[154] with some species having eyes up to Script error: No such module "convert". in diameter.[155]
Despite their size, the eyes of giant and colossal squids do not appear to be disproportionately large; they do not deviate significantly from the allometric relationship seen across other squid species.[156] Sepiolids are noted for having exceptionally large eyes, which are much bigger relative to their mantle length than those of the giant squid; the same is true of Histioteuthis species.[151] Gonatids and the loliginids Loligo and Lolliguncula also have proportionately somewhat larger eyes than Architeuthis.[151] Some sources state that the vampire squid (Vampyroteuthis infernalis) has the largest eyes of any animal relative to its size, with a Script error: No such module "convert". specimen having eyes around Script error: No such module "convert". in diameter.[157]
There is some debate in the scientific community as to the evolutionary reason behind the extremely large eyes of giant and colossal squids.[158] Nilsson et al. (2012) and Nilsson et al. (2013) argue that it is an anti-predator adaptation for enhanced detection of sperm whales, with the squids picking up plankton bioluminescence triggered by moving whales, perhaps from distances exceeding Script error: No such module "convert".. Schmitz et al. (2013a) and Schmitz et al. (2013b) contend that their eyes are so large due to a phylogenetically conserved developmental pattern that governs the relative dimensions of squids and their eyes, and that any fitness benefits their size may confer in terms of predator avoidance are the result of exaptation ("pre-adaptation").
Neurons
Squid giant axons can exceed Script error: No such module "convert". in diameter: 100 to 1000 times the thickness of mammalian axons. The axons of the Humboldt squid (Dosidicus gigas) are exceptional in that they can reach a diameter of as much as Script error: No such module "convert"., and those of Loligo forbesii can also exceed 1 mm.[159] Such was the importance of Humboldt squid to electrophysiology research that when the animals migrated out of reach of Chilean fishermen in the 1970s "it led to the demise of a world-class electrophysiology laboratory" based there.[160] Squid giant axon diameters do not necessarily correlate with overall body size; those of the giant squid (Architeuthis dux) are only Script error: No such module "convert". thick.[159]
The squid giant synapse is the largest chemical junction in nature. It lies in the stellate ganglion on each side of the midline, at the posterior wall of the squid's muscular mantle. Activation of this synapse triggers a synchronous contraction of the mantle musculature, causing the forceful ejection of a jet of water from the mantle. This water propulsion allows the squid to move rapidly through the water and, in the case of the so-called 'flying squids', even to jump through the surface of the water (breaking the air–water barrier) to escape predators.[161] Many essential elements of how all chemical synapses function were first discovered by studying the squid giant synapse.[162]
Photophores
Taningia danae, a very large octopoteuthid squid, possesses "lemon-sized" yellow photophores at the tips of two of its arms, which are the largest known light-emitting organs in the animal kingdom.[163] Video footage shot in 2005 in deep water off Japan shows T. danae emitting blinding flashes of light from these photophores as it attacks its prey.[164] A pair of muscular lids surrounds each photophore and it is the withdrawal of these lids that produces the flashes. A large individual filmed from a remote submersible off Hawaii in 2015 can clearly be seen opening the lids to reveal its photophores.[165] It is believed that this highly manoeuvrable squid uses bright flashes to disorientate potential prey. The flashes may also serve to illuminate prey for easier capture or play a role in courtship and/or territorial displays.[166]
Reproductive organs
Extreme penis elongation has been observed in the deep water squid Onykia ingens. When erect, the penis may be as long as the mantle, head, and arms combined.[167] As such, deep water squids have the greatest known penis length relative to body size of all mobile animals, second in the entire animal kingdom only to certain sessile barnacles.[168]
See also
- Deep-sea gigantism
- Gigantic octopus
- Largest body parts
- Largest organisms
- Largest prehistoric organisms
- List of colossal squid specimens and sightings
- List of giant squid specimens and sightings
- Smallest organisms
Notes
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References
Short citations
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- ↑ O'Dor & Hoar, 2000:8
- ↑ a b c Nilsson et al., 2012:683
- ↑ Smith et al., 2016
- ↑ a b Teichert & Kummel, 1960:6
- ↑ a b c Vermeij, 2016
- ↑ Pierce et al., 1995; 2004
- ↑ Gerhardt, 1966:171; Muntz, 1995; Ellis, 1998a:11
- ↑ Salvador & Tomotani, 2014
- ↑ Ley, 1941
- ↑ Lee, 1883; Ellis, 1994b
- ↑ see Garcin & Raynal, 2011; Barrère, 2017
- ↑ Guerra et al., 2011
- ↑ Tratz, 1973; Ellis, 1997a, b
- ↑ Landman & Ellis, 1998; Ablett, 2012
- ↑ a b Roper & Voss, 1983:58
- ↑ Ellis, 1998a:106; Glaubrecht & Salcedo-Vargas, 2004:62
- ↑ Roper & Voss, 1983:55
- ↑ see Arkhipkin et al., 2015
- ↑ a b c O'Shea & Bolstad, 2008
- ↑ Roper & Young, 1972:205
- ↑ Clarke, 1996:1105; O'Shea & Bolstad, 2008
- ↑ see Clarke, 1962; Wolff, 1981; 1984; Gröger et al., 2000; Staudinger et al., 2009; Potier et al., 2011
- ↑ Clarke, 1986:11
- ↑ Zeidberg, 2004:4195; Phillips, 2004:ii
- ↑ Nabhitabhata, 1998:32
- ↑ a b Cite error: Script error: No such module "Namespace detect".Script error: No such module "Namespace detect".
- ↑ O'Dor et al., 1986:59; Wood & O'Dor, 2000:93
- ↑ Cosgrove & McDaniel, 2009:88
- ↑ Grulke, 2014:105
- ↑ Script error: No such module "citation/CS1".
- ↑ Boletzky, 2003:19
- ↑ a b Cite error: Script error: No such module "Namespace detect".Script error: No such module "Namespace detect".
- ↑ Boletzky, 1999:24; 2003:20; Norman et al., 2002:733
- ↑ Norman et al., 2002:733; Fairbairn, 2007:3
- ↑ Norman et al., 2002:733
- ↑ see Kennedy & Cobban, 1990
- ↑ Script error: No such module "citation/CS1".
- ↑ Rosa & Seibel, 2010; McClain et al., 2015; Rosa et al., 2017
- ↑ a b c d e f g McClain et al., 2015
- ↑ Collins et al., 2001; Collins & Villanueva, 2006:294
- ↑ Voss, 1988; Vecchione et al., 2008
- ↑ see Teichert & Kummel, 1960; Stevens, 1988; Eyden, 2003b; Larson, 2010; Iba et al., 2015
- ↑ O'Shea & Bolstad, 2008; [Anonymous], N.d.
- ↑ a b [Anonymous], N.d.
- ↑ Lovis, 2011
- ↑ [Anonymous], N.d.
- ↑ [Anonymous], N.d.
- ↑ a b c [Anonymous], N.d.
- ↑ O'Shea, 2003c
- ↑ Ellis, 1998b; Paxton, 2016a; Bittel, 2016; Romanov et al., 2017
- ↑ a b Paxton, 2016a
- ↑ a b Kubodera et al., 2016
- ↑ see Holroyd, 2005
- ↑ Cerullo & Roper, 2012:22
- ↑ a b O'Shea, 2003a
- ↑ a b O'Shea & Bolstad, 2008; Roper & Shea, 2013:113
- ↑ Bittel, 2016
- ↑ a b Greshko, 2016
- ↑ Deagle et al., 2005
- ↑ Hofilena, 2014
- ↑ [Anonymous], 2000; Wong, 2000
- ↑ Vecchione et al., 2010
- ↑ see Bolstad, 2008; 2010
- ↑ Norman, 2000:174; Bolstad, 2008:107; Okutani, 2015b
- ↑ Roper et al., 1984; Roper & Jereb, 2010i:364; Okutani, 2015b
- ↑ see Dall, 1873; Verrill, 1876; Phillips, 1933; Croker, 1934; Phillips, 1961; Smith, 1963
- ↑ Hoff, 2003:90
- ↑ Nigmatullin et al., 2001; Roper et al., 2010b:301
- ↑ Wormuth, 1976:38; Norman, 2000:165; Glaubrecht & Salcedo-Vargas, 2004:54
- ↑ a b c Roper et al., 2010b:301
- ↑ Clarke, 1966:117; Glaubrecht & Salcedo-Vargas, 2004:59
- ↑ Glaubrecht & Salcedo-Vargas, 2004:59
- ↑ Nigmatullin et al., 2001:10; Roper et al., 2010b:301
- ↑ Cassell, 2005
- ↑ a b Lynnes & Rodhouse, 2002:1087; see also Carrington, 2000
- ↑ Bolstad, 2008:171
- ↑ Guerra & Segonzac, 2014:65
- ↑ Cosgrove, 1987
- ↑ Norman, 2000:214; Norman et al., 2014:124
- ↑ a b Cosgrove & McDaniel, 2009:67–69
- ↑ a b Cosgrove & McDaniel, 2009:71
- ↑ Anderson, 2003:3; Cosgrove & McDaniel, 2009:71; Yong, 2015
- ↑ O'Shea, 2002:1; 2004a:9; Finn, 2014a:227
- ↑ O'Shea, 2004a:9
- ↑ Landois, 1895:108
- ↑ Carnall, 2017
- ↑ Kennedy & Kaplan, 1995:21
- ↑ Landois, 1895:100
- ↑ Beer, 2015
- ↑ [Anonymous], N.d.; [Anonymous], 2008
- ↑ Teichert & Kummel, 1960:2
- ↑ Flower, 1955:329
- ↑ Landois, 1898:27
- ↑ Grulke, 2014:124
- ↑ a b Script error: No such module "Citation/CS1".
- ↑ a b Script error: No such module "Citation/CS1".
- ↑ a b c d Ellis, 1998a:211
- ↑ see Ellis, 1998a; Salcedo-Vargas, 1999; Glaubrecht & Salcedo-Vargas, 2004
- ↑ Robson, 1933:681; see for example Mitsukuri & Ikeda, 1895; Meek & Goddard, 1926; Clarke & Robson, 1929; Phillips, 1933; Croker, 1934; Rees, 1950; Smith, 1963; Nesis, 1970
- ↑ Ellis, 1998a:211; Norman, 2000:174
- ↑ Poppe & Goto, 1993
- ↑ Kubodera & Mori, 2005; Kubodera, 2010:25
- ↑ [Anonymous], 2007; Kubodera, 2010:38
- ↑ [Anonymous], 2013; [NHK], 2013c
- ↑ Baird, 2002
- ↑ [Anonymous], 2002a; O'Shea, 2003d
- ↑ e.g. Guerra et al., 2018
- ↑ Coe, 1929:36; G.E. Verrill, 1958:69; see Verrill 1874a, b; 1875a, b, c; 1876; 1877; 1878; 1880a, b; 1881a, b; 1882a
- ↑ O'Shea & Bolstad, 2008; Dery, 2013; Yong, 2015
- ↑ see Hansford, 2009
- ↑ Paxton, 2016a:86
- ↑ Murray, 1874:121
- ↑ a b c d Romanov et al., 2017
- ↑ Paxton, 2016a:83
- ↑ see Murray, 1874; Verrill, 1875a; Verrill, 1875b
- ↑ see Sanderson, 1956; Heuvelmans, 1958; Ley, 1959
- ↑ Roper & Boss, 1982:97
- ↑ Wood, 1982:193
- ↑ Roper & Boss, 1982:99; Wood, 1982:192; Haszprunar & Wanninger, 2012:R510
- ↑ Ellis, 1998a:143
- ↑ see Ellis, 1998a:142
- ↑ Matthews, 1938
- ↑ Ley, 1959:210
- ↑ a b Aldrich, 1980:59
- ↑ Ellis, 1998a:142
- ↑ see Feldman, 1999 for more on this specimen
- ↑ O'Shea, 2003a; Roper & Jereb, 2010a:121
- ↑ Alexander, 1998:1233
- ↑ a b Ellis, 1998a:106
- ↑ MacGinitie & MacGinitie, 1949
- ↑ MacGinitie & MacGinitie, 1968; Wood, 1982:190
- ↑ Heuvelmans, 1958
- ↑ Ellis, 1998a:107
- ↑ Dall, 1885:432
- ↑ Newman, 1994:66
- ↑ Newman, 1994:66; Cosgrove & McDaniel, 2009:66–67
- ↑ Anderson, 2003:2; Cosgrove & McDaniel, 2009:71
- ↑ Anderson, 2003:3; Cosgrove & McDaniel, 2009:71; Scheel & Anderson, 2012
- ↑ Anderson, 2003:2
- ↑ The Azorean Loligo forbesi (Cephalopoda: Loliginidae) in captivity: transport, handling, maintenance, tagging and survival
- ↑ Body size and fin length as determinants in the geographic distribution of Loliginid squids
- ↑ Script error: No such module "Citation/CS1".
- ↑ Script error: No such module "Citation/CS1".
- ↑ a b c Script error: No such module "Citation/CS1".
- ↑ Script error: No such module "Citation/CS1".
- ↑ Script error: No such module "Citation/CS1".
- ↑ Script error: No such module "Citation/CS1".
- ↑ Script error: No such module "Citation/CS1".
- ↑ Script error: No such module "citation/CS1".
- ↑ Script error: No such module "Citation/CS1".
- ↑ a b c Schmitz et al., 2013a
- ↑ Farquhar, 2014; [Te Papa], 2014
- ↑ Land & Nilsson, 2012:86
- ↑ Motani et al., 1999; Humphries & Ruxton, 2002
- ↑ Nilsson et al., 2012:687
- ↑ Schmitz et al., 2013a:45
- ↑ Ellis, 1996:177; [Anonymous], 2005a; though see Young et al., 2015
- ↑ Partridge, 2012
- ↑ a b Adelman & Gilbert, 1990:102
- ↑ Scully, 2008
- ↑ Arata, 1954; Murata, 1988; Maciá et al., 2004; Muramatsu et al., 2013; O'Dor et al., 2013
- ↑ see Llinás, 1999
- ↑ Ellis, 1998a:149; Barrat, 2015
- ↑ see Kubodera et al., 2006
- ↑ see Barrat, 2015
- ↑ Kubodera et al., 2006:1033
- ↑ Arkhipkin & Laptikhovsky, 2010:299; Walker, 2010
- ↑ Arkhipkin & Laptikhovsky, 2010:300
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