57
3 Fisheries Production and Market Demand
Ling J, Zheng Y (2000) Stock assessment of Cephalopoda in East China Sea and Yellow Sea.
Marine Fisheries Vol. 22, pp. 60–62 (2000). (in Chinese with English abstract)
McAllister MK, Hill SL, Agnew DJ, Kirkwood GP, Beddington JR (2004) A Bayesian hierarchical formulation of the De Lury stock assessment model for abundance estimation of Falkland
Islands’ squid. Can J Fish Aquat Sci 61:1048–1059
Nigmatullin ChM (2004) Estimation of biomass, production and fishery potential of ommastrephid
squids in the World Ocean and problems of their fishery forecasting. ICES CM 2004/ CC: 06.
2004. International Council for the Exploration of the Sea, Copenhagen
Nigmatullin ChM (2010) The world cephalopod fishery history, current state and prospects: a brief
overview. In: Abstracts volume of the 5th International Symposium on Pacific Squids 2010
(October 13–15 2010, La Paz, Baja California Sur. Mexico). CIBNOR, La Paz, p 53
Oestmann DJ, Scimeca JW, Forsythe JW, Hanlon RT, Lee PG (1997) Special considerations for
keeping cephalopods in laboratory facilities. Contemp Top Lab Anim 36:89–93
Pauly D (1998) Why squids, though not fish, may be better understood by pretending they are. In:
Payne AIL, Lipinski MR, Clarke MR, Roeleveld MAC (eds). Cephalopod biodiversity, Ecology and Evolution. S Afr J Mar Sci 20:47–58
Payne AG, Agnew DJ, Pierce GJ (eds) (2006) Trends and assessment of cephalopod fisheries—
Proceedings of the CEPHSTOCK cephalopod assessment workshop. Fish Res 78:1–106
Pecl GT, Moltschaniwskyj NA, Tracey SR, Jordan AR (2004) Inter-annual plasticity of squid
life history and population structure: ecological and management implications. Oecologia
139:515–524
Pierce GJ, Guerra A (1994) Stock assessment methods used for cephalopod fisheries. Fish Res
21:255–285
Pierce GJ, Allcock L, Bruno I, Bustamante P, González Á, Guerra Á, Jereb P, Lefkaditou E, Malham S, Moreno A, Pereira J, Piatkowski U, Rasero M, Sánchez P, Santos MB, Santurtún M,
Seixas S, Sobrino I, Villanueva R (eds) (2010) Cephalopod biology and fisheries in Europe.
ICES Cooperative Research Report No. 303. International Council for the Exploration of the
Sea, Copenhagen
Punt AE, Leslie RW, Du Plessis SE (1992) Estimation of the annual consumption of food by Cape
hake Merluccius capensis and M� paradoxus off the South African west coast. S Afr J Mar Sci
12:611–634
Roa-Ureta R, Arkhipkin AI (2007) Short-term stock assessment of Loligo gahi at the Falkland
Islands: sequential use of stochastic biomass projection and stock depletion models. ICES J
Mar Sci 64:3–17
Rocha F, Guerra Á, González Á (2001) A review of reproductive strategies in cephalopods. Biol
Rev 76:291–304
Rocha F, Otero J, Outeiral R, González AF, Gracia J, Guerra A (2006) Modelling small-scale
coastal fisheries of Galicia (NW Spain) based on data obtained from fisheries: the case of Sepia
officinalis. Sci Mar 70:593–601
Rosa R, Seibel BA (2008) Synergistic effects of climate-related variables suggest future physiological impairment in a top oceanic predator. Proc Natl Acad Sci U.S.A. 52:20776–20780
Rosenberg AA, Kirkwood GP, Crombie JA, Beddington JR (1990) The assessment of stocks of
annual squid species. Fish Res 8:335–350
Shaw R (1994) An economic description and assessment of the squid catching industry in Great
Britain, Portugal and Spain. Fish Res 21:287–303
Shaw PW, Boyle PR (1997) Multiple paternity within the brood of single females of Loligo forbesi
(Cephalopoda: Loliginidae), demonstrated with microsatellite DNA markers. Mar Ecol-Prog
Ser 160:279–282
Shaw PW, Sauer WHH (2004) Evidence for multiple paternity and complex fertilisation dynamics
in the squid Loligo vulgaris reynaudii. Mar Ecol-Prog Ser 270:173–179
Siebel BA, Goffredi SK, Thuesen EV, Childress JJ, Robison BH (2005) Ammonium content and
buoyancy in midwater cephalopods. J Exp Mar Biol Ecol 313:375–387
Smale MJ (1996) Cephalopods as prey. IV. Fishes. Philos T R Soc Lond B 351:1067–1081
3 Fisheries Production and Market Demand
Ling J, Zheng Y (2000) Stock assessment of Cephalopoda in East China Sea and Yellow Sea.
Marine Fisheries Vol. 22, pp. 60–62 (2000). (in Chinese with English abstract)
McAllister MK, Hill SL, Agnew DJ, Kirkwood GP, Beddington JR (2004) A Bayesian hierarchical formulation of the De Lury stock assessment model for abundance estimation of Falkland
Islands’ squid. Can J Fish Aquat Sci 61:1048–1059
Nigmatullin ChM (2004) Estimation of biomass, production and fishery potential of ommastrephid
squids in the World Ocean and problems of their fishery forecasting. ICES CM 2004/ CC: 06.
2004. International Council for the Exploration of the Sea, Copenhagen
Nigmatullin ChM (2010) The world cephalopod fishery history, current state and prospects: a brief
overview. In: Abstracts volume of the 5th International Symposium on Pacific Squids 2010
(October 13–15 2010, La Paz, Baja California Sur. Mexico). CIBNOR, La Paz, p 53
Oestmann DJ, Scimeca JW, Forsythe JW, Hanlon RT, Lee PG (1997) Special considerations for
keeping cephalopods in laboratory facilities. Contemp Top Lab Anim 36:89–93
Pauly D (1998) Why squids, though not fish, may be better understood by pretending they are. In:
Payne AIL, Lipinski MR, Clarke MR, Roeleveld MAC (eds). Cephalopod biodiversity, Ecology and Evolution. S Afr J Mar Sci 20:47–58
Payne AG, Agnew DJ, Pierce GJ (eds) (2006) Trends and assessment of cephalopod fisheries—
Proceedings of the CEPHSTOCK cephalopod assessment workshop. Fish Res 78:1–106
Pecl GT, Moltschaniwskyj NA, Tracey SR, Jordan AR (2004) Inter-annual plasticity of squid
life history and population structure: ecological and management implications. Oecologia
139:515–524
Pierce GJ, Guerra A (1994) Stock assessment methods used for cephalopod fisheries. Fish Res
21:255–285
Pierce GJ, Allcock L, Bruno I, Bustamante P, González Á, Guerra Á, Jereb P, Lefkaditou E, Malham S, Moreno A, Pereira J, Piatkowski U, Rasero M, Sánchez P, Santos MB, Santurtún M,
Seixas S, Sobrino I, Villanueva R (eds) (2010) Cephalopod biology and fisheries in Europe.
ICES Cooperative Research Report No. 303. International Council for the Exploration of the
Sea, Copenhagen
Punt AE, Leslie RW, Du Plessis SE (1992) Estimation of the annual consumption of food by Cape
hake Merluccius capensis and M� paradoxus off the South African west coast. S Afr J Mar Sci
12:611–634
Roa-Ureta R, Arkhipkin AI (2007) Short-term stock assessment of Loligo gahi at the Falkland
Islands: sequential use of stochastic biomass projection and stock depletion models. ICES J
Mar Sci 64:3–17
Rocha F, Guerra Á, González Á (2001) A review of reproductive strategies in cephalopods. Biol
Rev 76:291–304
Rocha F, Otero J, Outeiral R, González AF, Gracia J, Guerra A (2006) Modelling small-scale
coastal fisheries of Galicia (NW Spain) based on data obtained from fisheries: the case of Sepia
officinalis. Sci Mar 70:593–601
Rosa R, Seibel BA (2008) Synergistic effects of climate-related variables suggest future physiological impairment in a top oceanic predator. Proc Natl Acad Sci U.S.A. 52:20776–20780
Rosenberg AA, Kirkwood GP, Crombie JA, Beddington JR (1990) The assessment of stocks of
annual squid species. Fish Res 8:335–350
Shaw R (1994) An economic description and assessment of the squid catching industry in Great
Britain, Portugal and Spain. Fish Res 21:287–303
Shaw PW, Boyle PR (1997) Multiple paternity within the brood of single females of Loligo forbesi
(Cephalopoda: Loliginidae), demonstrated with microsatellite DNA markers. Mar Ecol-Prog
Ser 160:279–282
Shaw PW, Sauer WHH (2004) Evidence for multiple paternity and complex fertilisation dynamics
in the squid Loligo vulgaris reynaudii. Mar Ecol-Prog Ser 270:173–179
Siebel BA, Goffredi SK, Thuesen EV, Childress JJ, Robison BH (2005) Ammonium content and
buoyancy in midwater cephalopods. J Exp Mar Biol Ecol 313:375–387
Smale MJ (1996) Cephalopods as prey. IV. Fishes. Philos T R Soc Lond B 351:1067–1081
