37
Mather JA (2011) Why is Octopus cyanea Gray in Hawaii specializing in crabs as prey? Vie Milieu
61:181–184
Mather JA (in press) Enrichment and cephalopods. Shape Enrich
Mather JA, O’Dor RK (1984) Spatial organization of schools of the squid Illex illecebrosus. Mar
Behav Physiol 10:259–271
Mather JA, O’Dor RK (1991) Foraging strategies and predation risk shape the natural history of
the juvenile Octopus vulgaris. Bull Mar Sci 49:256–269
Mather JA, Resler S, Cosgrove J (1985) Activity and movement patterns of Octopus dofleini. Mar
Behav Physiol 11:301–314
Mather JA, Anderson RC, Wood JB (2010a) Octopus: the ocean’s intelligent invertebrate. Timber
Press, Portland
Mather JA, Griebel U, Byrne RA (2010b) Squid dances: an ethogram of postures and actions of
Sepioteuthis sepioidea squid with a muscular hydrostat system. Mar Freshw Behav Physiol
43:45–61
Mather JA, Leite TS, Batista AT (2012) Individual prey choices of octopuses: why are they generalist or specialist? Curr Zool 58(4):596–602
McQuaid CD (1994) Feeding behaviour and selection of bivalve prey by Octopus vulgaris Cuvier.
J Exp Mar Biol Ecol 177:187–202
Meisel DA, Byrne RA, Kuba MJ et al (2006) Comparing the activity patterns of two Mediterranean octopus species. J Comp Psychol 120:191–197
Messenger JB (1968) The visual attack of the cuttlefish, Sepia officinalis. Anim Behav 16:342–357
Messenger JB (1973) Learning in the cuttlefish, Sepia. Anim Behav 21(4):801–826
Messenger JB (2001) Cephalopod chromatophores: neurobiology and natural history. Biol Rev
76:473–528
Moltschaniwskyj NA, Hall K, Lipinski MR et al (2007) Ethical and welfare considerations when
using cephalopods as experimental animals. Rev Fish Biol Fish 17:455–476
Moynihan MH, Rodaniche AF (1982) The behaviour and natural history of the Caribbean reef
squid Sepioteuthis sepioidea with a consideration of social, signal and defensive patterns for
difficult and dangerous environments. Adv Ethol 125:1–150
Neill SRStJ, Cullen JM (1974) Experiments on whether schooling by their prey affects the hunting
behavior of cephalopods and fish predators. J Zool Lond 172:549–569
Nesis KN (1983) Dosidicus gigas. In: Boyle PR (ed) Cephalopod Life Cycles: vol. I Species Accounts. Academic Press, London, pp 215–231
Nightingail A (2012) Who’s for lunch? A gull-eating octopus in Victoria, BC. http://www.birdfellow.com/journal/archive/2012/4. Accessed 21 Sept 2012
Nigmatullin CM, Nesis KN, Arkhipkin AI (2001) A review of the biology of the jumbo squid
Dosidicus gigas (Cephalopoda: Ommastrephidae). Fish Res 54:9–19
Nixon M, Maconnachie E (1988) Drilling by Octopus vulgaris (Mollusca: Cephalopoda) in the
Mediterranean. J Zool. Lond 216:687–716
Nixon M, Mangold K (1996) The early life of Octopus vulgaris (Cephalopoda: Octopodidae) in
the plankton and at settlement: a change in lifestyle. J Zool. Lond 239:301–327
Norman M, Finn J, Tregenza T (1999) Female impersonation as an alternative reproductive strategy in giant cuttlefish. Proc R Soc Lond B 266:1347–1349
O’Dor RK, Webber DM (1986) The constraints on cephalopods: why squid aren’t fish. Can J Zool
64:1591–1605
O’Dor RT, Dawe EG (1998) Illex illecebrosus. In: Rodhouse PG, Dawe EG, O’Dor RK (eds)
Squid recruitment dynamics: the genus Illex as a model, the commercial Illex species and influence on variability. FAO Fish Tech Pap 376, Rome, pp 77–104
Onthank KL, Cowles DL (2011) Prey selection in Octopus rubescens: possible roles of energy
budgeting and prey nutritional composition. Mar Biol 158(12):2795–2804
Ortiz N (2006) First description of eggs, hatchlings and hatchling behaviour of Enteroctopus megalocyathus (Cephalopoda: Octopodidae). J Plankton Res 28(10):881–890
Packard A (1972) Cephalopods and fish: the limits of convergence. Biol Rev 47:241–307
Peters A, Rehling M, Anderson RC (2005) Mission possible: enriched cephalopods. AZA Comm
September 2005:21–23
2 Behaviour
Mather JA (2011) Why is Octopus cyanea Gray in Hawaii specializing in crabs as prey? Vie Milieu
61:181–184
Mather JA (in press) Enrichment and cephalopods. Shape Enrich
Mather JA, O’Dor RK (1984) Spatial organization of schools of the squid Illex illecebrosus. Mar
Behav Physiol 10:259–271
Mather JA, O’Dor RK (1991) Foraging strategies and predation risk shape the natural history of
the juvenile Octopus vulgaris. Bull Mar Sci 49:256–269
Mather JA, Resler S, Cosgrove J (1985) Activity and movement patterns of Octopus dofleini. Mar
Behav Physiol 11:301–314
Mather JA, Anderson RC, Wood JB (2010a) Octopus: the ocean’s intelligent invertebrate. Timber
Press, Portland
Mather JA, Griebel U, Byrne RA (2010b) Squid dances: an ethogram of postures and actions of
Sepioteuthis sepioidea squid with a muscular hydrostat system. Mar Freshw Behav Physiol
43:45–61
Mather JA, Leite TS, Batista AT (2012) Individual prey choices of octopuses: why are they generalist or specialist? Curr Zool 58(4):596–602
McQuaid CD (1994) Feeding behaviour and selection of bivalve prey by Octopus vulgaris Cuvier.
J Exp Mar Biol Ecol 177:187–202
Meisel DA, Byrne RA, Kuba MJ et al (2006) Comparing the activity patterns of two Mediterranean octopus species. J Comp Psychol 120:191–197
Messenger JB (1968) The visual attack of the cuttlefish, Sepia officinalis. Anim Behav 16:342–357
Messenger JB (1973) Learning in the cuttlefish, Sepia. Anim Behav 21(4):801–826
Messenger JB (2001) Cephalopod chromatophores: neurobiology and natural history. Biol Rev
76:473–528
Moltschaniwskyj NA, Hall K, Lipinski MR et al (2007) Ethical and welfare considerations when
using cephalopods as experimental animals. Rev Fish Biol Fish 17:455–476
Moynihan MH, Rodaniche AF (1982) The behaviour and natural history of the Caribbean reef
squid Sepioteuthis sepioidea with a consideration of social, signal and defensive patterns for
difficult and dangerous environments. Adv Ethol 125:1–150
Neill SRStJ, Cullen JM (1974) Experiments on whether schooling by their prey affects the hunting
behavior of cephalopods and fish predators. J Zool Lond 172:549–569
Nesis KN (1983) Dosidicus gigas. In: Boyle PR (ed) Cephalopod Life Cycles: vol. I Species Accounts. Academic Press, London, pp 215–231
Nightingail A (2012) Who’s for lunch? A gull-eating octopus in Victoria, BC. http://www.birdfellow.com/journal/archive/2012/4. Accessed 21 Sept 2012
Nigmatullin CM, Nesis KN, Arkhipkin AI (2001) A review of the biology of the jumbo squid
Dosidicus gigas (Cephalopoda: Ommastrephidae). Fish Res 54:9–19
Nixon M, Maconnachie E (1988) Drilling by Octopus vulgaris (Mollusca: Cephalopoda) in the
Mediterranean. J Zool. Lond 216:687–716
Nixon M, Mangold K (1996) The early life of Octopus vulgaris (Cephalopoda: Octopodidae) in
the plankton and at settlement: a change in lifestyle. J Zool. Lond 239:301–327
Norman M, Finn J, Tregenza T (1999) Female impersonation as an alternative reproductive strategy in giant cuttlefish. Proc R Soc Lond B 266:1347–1349
O’Dor RK, Webber DM (1986) The constraints on cephalopods: why squid aren’t fish. Can J Zool
64:1591–1605
O’Dor RT, Dawe EG (1998) Illex illecebrosus. In: Rodhouse PG, Dawe EG, O’Dor RK (eds)
Squid recruitment dynamics: the genus Illex as a model, the commercial Illex species and influence on variability. FAO Fish Tech Pap 376, Rome, pp 77–104
Onthank KL, Cowles DL (2011) Prey selection in Octopus rubescens: possible roles of energy
budgeting and prey nutritional composition. Mar Biol 158(12):2795–2804
Ortiz N (2006) First description of eggs, hatchlings and hatchling behaviour of Enteroctopus megalocyathus (Cephalopoda: Octopodidae). J Plankton Res 28(10):881–890
Packard A (1972) Cephalopods and fish: the limits of convergence. Biol Rev 47:241–307
Peters A, Rehling M, Anderson RC (2005) Mission possible: enriched cephalopods. AZA Comm
September 2005:21–23
2 Behaviour
