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Évaluation et Rapport de situation du COSEPAC sur le sébastolobe à longues épines au Canada

Sources d’information

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DFO. 2007. Région du Pacifique, Integrated Fisheries Management Plan, Groundfish, March 10, 2007 to March 31, 2008, ministère des Pêches et des Océans, Vancouver (Colombie-Britannique), http://www-ops2.pac.dfo-mpo.gc.ca/xnet/content/MPLANS/plans07/Groundfish0708pl.pdf

Fay, G. 2006. Stock assessment and status of longspine thornyhead (Sebastolobus altivelis) off California, Oregon and Washington in 2005, in volume 4 : Status of the Pacific Coast Groundfish Fishery Through 2005, Stock Assessment and Fishery Evaluation Portland (Oregon) : Pacific Fishery Management Council.

Froese, R., et D. Pauly. Éditeurs. 2005. FishBase, publication électronique sur le Web, version (03/2005), consulté par les rédacteurs en juin 2005.

Haigh, R., Olsen, N. et P. Starr. 2005. Examen du sébastolobe à longues épines (Sebastolobus altivelis) dans les eaux de la côte canadienne du Pacifique : biologie, répartition et tendances en matière d’abondance, Canadian Stock Assessment Advisory, document de recherche 2005/097, 38 p. http://www.dfo-mpo.gc.ca/csas/csas/publications/resdocs-docrech/2005/2005_097_e.htm

Haigh, R., et J.T. Schnute. 2003. The longspine thornyhead fishery along the west coast of Vancouver Island, British Columbia, Canada : portrait of a developing fishery, North American Journal of Fisheries Management 23: 120-140.

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Ianelli, J.N., R.R. Lauth et L.D. Jacobson. 1994. Status of the thornyhead (Sebastolobus sp.) resource in 1994 (Appendix D), in Appendices to the Status of the Pacific Coast Groundfish Fishery Through 1994 and Recommended Acceptable Biological Catches for 1995, Appendix Vol. 1 : Stock Assessment and Fishery Evaluation, Pacific Fishery Management Council, Portland (Oregon), p. D1 à D58.

Jacobson, L.D. 1991. Thornyheads stock assessment for 1991 in Appendices to the Status of the Pacific Coast Groundfish Fishery Through 1990 and Recommended Acceptable Biological Catches for 1991, Appendix Vol. 1 : Stock Assessment and Fishery Evaluation. Pacific Fishery Management Council, Portland (Oregon), p. C1 à C67.

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Krishka, B.A., P.J. Starr et E.M. Choromanski. 2005. Longspine thornyhead random stratified trawl survey off the west coast of Vancouver Island, September 4-21, 2003, Canadian Technical Report of Fisheries and Aquatic Sciences 2577. 93 p.

Love, M. 1996. Probably more than you want to know about the fishes of the Pacific coast, 2nd edition, Really Big Press, Santa Barbara (Californie), 381 p.

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Pearcy, W.G. 1962. Egg masses and early developmental stages of the Scorpaenid fish, Sebastolobus, Journal Fisheries Research Board of Canada 19: 1169-1173.

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Siebenaller, J.F., et G.N. Somero. 1982. The maintenance of different enzyme activity levels in congeneric fishes living at different depths, Physiology and Zoology 55: 171-179.

Smith Jr., K.L., et N.O. Brown. 1983. Oxygen consumption of pelagic juveniles and demersal adults of the deep-sea fish Sebastolobus altivelis, measured at depth, Marine Biology 76: 325-332.

Somero, G.N. 1982. Adaptations to high hydrostatic pressure, Annual Review of Physiology 54: 557-577.

Starr, P.J., B.A. Krishka et E.M. Choromanski. 2002. Trawl survey for thornyhead biomass off the west coast of Vancouver Island, September 15 – October 2, 2001, Canadian Technical Report of Fisheries and Aquatic Sciences 2421. 60 p.

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Vetter, R.D., et E.A. Lynn. 1997. Bathymetric demography, enzyme activity patterns, and bioenergetics of deep-living scorpaenid fishes (genera Sebastes and Sebastolobus) : paradigms revisited, Marine Ecology Progress Series 155: 173-188.

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Wakefield, W.W., et K.L. Smith Jr. 1990. Ontogenetic vertical migration in Sebastolobus altivelis as a mechanism for transport of particulate organic matter at continental slope depths, Limnology and Oceanography 35: 1314-1328.

Yang, T.-H., et G.N. Somero. 1993. Effects of feeding and food deprivation on oxygen consumption, muscle protein concentration and activities of energy metabolism enzymes in muscle and brain of shallow-living (Scorpaena guttata) and deep-living (Sebastolobus alascanus) scorpaenid fishes, Journal of Experimental Biology 181: 213-232.