Page 18 - 《水产学报》2026年第01期
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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
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