Page 18 - 《水产学报》2026年第01期
P. 18
1 期 周 成,等:商业性热带金枪鱼栖息地研究进展 50 卷
[ 62 ] Bernal D, Dickson K A, Shadwick R E, et al. Review: ana- [ 73 ] Ohshimo S, Hiraoka Y, Sato T, et al. Feeding habits of bigeye
lysis of the evolutionary convergence for high performance tuna (Thunnus obesus) in the North Pacific from 2011 to
swimming in lamnid sharks and tunas[J]. Comparative Bio- 2013[J]. Marine and Freshwater Research, 2018, 69(4): 585-
chemistry and Physiology-Part A: Molecular & Integrative 606.
Physiology, 2001, 129(2-3): 695-726. [ 74 ] Bertrand A, Bard F X, Josse E. Tuna food habits related to the
[ 63 ] Sharp G D, Francis R C. An energetics model for the exploited micronekton distribution in French Polynesia[J]. Marine Bio-
yellowfin tuna, Thunnus albacares, population in the eastern logy, 2002, 140(5): 1023-1037.
Pacific Ocean[J]. Fishery Bulletin, 1976, 74(1): 36-51. [ 75 ] Artetxe-Arrate I, Fraile I, Marsac F, et al. A review of the fish-
[ 64 ] Graham J B, Dickson K A. Anatomical and physiological spe- eries, life history and stock structure of tropical tuna (skipjack
cializations for endothermy[J]. Fish Physiology, 2001, 19: 121- Katsuwonus pelamis, yellowfin Thunnus albacares and bigeye
165. Thunnus obesus) in the Indian Ocean[J]. Advances in Marine
[ 65 ] Block B A, Stevens E D. Tuna: physiology, ecology, and evol- Biology, 2021, 88: 39-89.
ution[M]. San Diego: Academic Press, 2001. [ 76 ] Graham J B, Dickson K A. Tuna comparative physiology[J].
[ 66 ] Brill R W, Bigelow K A, Musyl M K, et al. Bigeye tuna Journal of Experimental Biology, 2004, 207(23): 4015-4024.
(Thunnus obesus) behavior and physiology and their relev- [ 77 ] Stöcker S. Models for tuna school formation[J]. Mathematical
ance to stock assessments and fishery biology[J]. Collective biosciences, 1999, 156(1-2): 167-190.
Volume of Scientific Papers, 2005, 57(2): 142-161. [ 78 ] Bakun A. Patterns in the ocean: ocean processes and marine
[ 67 ] Brill R W, Block B A, Boggs C H, et al. Horizontal move- population dynamics[J]. Oceanographic Literature Review,
ments and depth distribution of large adult yellowfin tuna 1997, 5(44): 530.
(Thunnus albacares) near the Hawaiian Islands, recorded [ 79 ] Kai E T, Marsac F. Influence of mesoscale eddies on spatial
using ultrasonic telemetry: implications for the physiological structuring of top predators’ communities in the Mozambique
ecology of pelagic fishes[J]. Marine Biology, 1999, 133(3): Channel[J]. Progress in Oceanography, 2010, 86(1-2): 214-
395-408. 223.
[ 68 ] Schaefer K M, Fuller D W. Vertical movement patterns of [ 80 ] Kitagawa T, Kimura S, Nakata H, et al. Overview of research
skipjack tuna (Katsuwonus pelamis) in the eastern equatorial on tuna thermo-physiology using electric tags[J]. Memoirs of
Pacific Ocean, as revealed with archival tags[J]. Fishery Bul- National Institute of Polar Research, 2004, 58: 69-79.
letin, 2007, 105(3): 379-389. [ 81 ] Holland K N, Brill R W, Chang R K C. Horizontal and ver-
[ 69 ] Reglero P, Tittensor D P, Álvarez-Berastegui D, et al. World- tical movements of yellowfin and bigeye tuna associated with
wide distributions of tuna larvae: revisiting hypotheses on fish aggregating devices[J]. Fishery Bulletin, 1990, 88: 493-
environmental requirements for spawning habitats[J]. Marine 507.
Ecology Progress Series, 2014, 501: 207-224. [ 82 ] Bach P, Dagorn L, Bertrand A, et al. Acoustic telemetry
[ 70 ] Bakun A. Fronts and eddies as key structures in the habitat of versus monitored longline fishing for studying the vertical dis-
marine fish larvae: opportunity, adaptive response and com- tribution of pelagic fish: bigeye tuna (Thunnus obesus) in
petitive advantage[J]. Scientia Marina, 2006, 70(S2): 105-122. French Polynesia[J]. Fisheries Research, 2003, 60(2-3): 281-
[ 71 ] Llopiz J K, Richardson D E, Shiroza A, et al. Distinctions in 292.
the diets and distributions of larval tunas and the important [ 83 ] Gunn J, Block B. Advances in acoustic, archival, and satellite
role of appendicularians[J]. Limnology and Oceanography, tagging of tunas[J]. Fish Physiology, 2001, 19: 167-224.
2010, 55(3): 983-996. [ 84 ] Dagorn L, Bach P, Josse E. Movement patterns of large bigeye
[ 72 ] Alatorre-Ramirez V G, Galván-Magaña F, Torres-Rojas Y E, tuna (Thunnus obesus) in the open ocean, determined using
et al. Trophic segregation of mixed schools of yellowfin tuna ultrasonic telemetry[J]. Marine Biology, 2000, 136(2): 361-
(Thunnus albacares) and skipjack tuna (Katsuwonus pelamis) 371.
caught in the eastern tropical Pacific Ocean[J]. Fishery Bul- [ 85 ] Dagorn L, Bertrand A, Bach P, et al. Improving our under-
letin, 2017, 115(2): 252-268. standing of tropical tuna movements from small to large
中国水产学会主办 sponsored by China Society of Fisheries https://www.china-fishery.cn
15

