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沐希成,等                                                                 水产学报, 2025, 49(7): 079512

              [11]   许家炜, 陈静, 林晨宇, 等. 齐口裂腹鱼在低照度下的趋光行                waves  in  a  moving  fluid[J].  Physical  Review  B,  2015,  92(2):
                    为  [J]. 生态学杂志, 2018, 37(8): 2394-2402.          020201.
                    Xu  J  W,  Chen  J,  Lin  C  Y,  et  al.  The  phototaxis  behavior  of  [21]   张俊, 车轩, 贾广臣, 等. 人工坝体对长江上游鱼类栖息地流
                    Schizothorax prenanti in low light intensity[J]. Chinese Journal  域水动力学特性的影响  [J]. 农业工程学报, 2021, 37(5): 140-
                    of Ecology, 2018, 37(8): 2394-2402 (in Chinese).  146.
              [12]   黄晓龙, 白艳勤, 姜伟, 等. 不同电极布置方式和电学参数下                Zhang  J,  Che  X,  Jia  G  C,  et  al.  Effects  of  artificial  dams  on
                    拦鱼电栅对鲢的阻拦效果      [J]. 生态学杂志, 2023, 42(9): 2176-  hydrodynamic characteristics of fish habitats in upper reaches
                    2183.                                           of  Yangtze  River[J].  Transactions  of  the  Chinese  Society  of
                    Huang X L, Bai Y Q, Jiang W, et al. The blocking effects of  Agricultural Engineering, 2021, 37(5): 140-146 (in Chinese).
                    electric barrier with different electrode arrangements and elec-  [22]   熊飞, 张伟, 翟东东, 等. 蓄水后向家坝库区鱼类物种、分类
                    trical parameters on silver carp[J]. Chinese Journal of Ecology,  和功能多样性变化  [J]. 湖泊科学, 2024, 36(1): 200-212.
                    2023, 42(9): 2176-2183 (in Chinese).            Xiong F, Zhang W, Zhai D D, et al. Changes of species, taxo-
              [13]   石小涛, 张政, 黄晓龙, 等. 不同电学参数和水流条件下电栅                nomic  and  functional  diversity  of  fish  assemblages  in  the
                    对鲤  (Cyprinus carpio) 的阻拦效果  [J]. 海洋与湖沼, 2024,  Xiangjiaba Reservoir of the lower Jinsha River after impound-

                    55(3): 546-554.                                 ment[J].  Journal  of  Lake  Sciences,  2024,  36(1):  200-212  (in
                    Shi X T, Zhang Z, Huang X L, et al. The barrier effect of elec-  Chinese).
                    tric fence on Cyprinus carpio under different electrical paramet-  [23]   An R D, Li J, Yi W M, et al. Hydraulics and swimming beha-
                    ers and flow conditions[J]. Oceanologia et Limnologia Sinica,  vior  of  Schizothorax  prenanti  in  vertical  slot  fishways[J].
                    2024, 55(3): 546-554 (in Chinese).              Journal of Hydrodynamics, 2019, 31(1): 169-176.
              [14]   Sager D R, Hocutt C H, Stauffer Jr J R. Estuarine fish responses  [24]   Tonolla D, Lorang M S, Heutschi K, et al. A flume experiment
                    to strobe light, bubble curtains and strobe light/bubble-curtain  to  examine  underwater  sound  generation  by  flowing  water[J].
                    combinations as  influenced  by  water  flow  rate  and  flash   fre-  Aquatic Sciences, 2009, 71(4): 449-462.
                    quencies[J]. Fisheries Research, 1987, 5(4): 383-399.  [25]   Bass  A  H,  Clark  C  W.  The  physical  acoustics  of  underwater
              [15]   Jesus J, Amorim M C P, Fonseca P J, et al. Acoustic barriers as  sound communication[M]. New York: Springer, 2003: 15-64.
                    an acoustic deterrent for native potamodromous migratory fish  [26]   Bies D A, Hansen C H. Engineering noise control: theory and
                    species[J]. Journal of Fish Biology, 2019, 95(1): 247-255.  practice[M]. 4th ed. London: CRC Press, 2009.
              [16]   朱存良. 鱼类行为生态学研究进展     [J]. 北京水产, 2007(1): 20-  [27]   Rogers P H, Hawkins A D, Popper A N, et al. Parvulescu revis-
                    24.                                             ited:  small  tank  acoustics  for  bioacousticians[J].  Advances  in
                    Zhu  C  L.  Advances  in  fish  behavioral  ecology[J].  Journal  of  Experimental Medicine and Biology, 2016, 875: 933-941.
                    Beijing Fisheries, 2007(1): 20-24 (in Chinese).  [28]   朱天然, 孙林, 李嘉, 等. 齐口裂腹鱼集群行为对流态的响应
              [17]   Liu  G  Y,  Wu  Y  J,  Shen  X  J,  et  al.  Laboratory  experiments  [J]. 农业工程学报, 2022, 38(11): 144-150.
                    demonstrate that the hissing of the Chinese alligator can effect-  Zhu T R, Sun L, Li J, et al. Response of the behavior of the
                    ively  inhibit  movement  of  flower  fish  Ptychobarbus  Schizothorax prenati to the flow pattern[J]. Transactions of the
                    kaznakovi[J]. Hydrobiologia, 2019, 836(1): 97-108.  Chinese Society of Agricultural Engineering, 2022, 38(11): 144-
              [18]   Vetter B J, Murchy K A, Cupp A R, et al. Acoustic deterrence  150 (in Chinese).
                    of  bighead  carp  (Hypophthalmichthys  nobilis)  to  a  broadband  [29]   刘猛, 危起伟, 杜浩, 等. 胭脂鱼听觉阈值研究  [J]. 中国水产
                    sound  stimulus[J].  Journal  of  Great  Lakes  Research,  2017,  科学. 2013, 20(4): 750-757.
                    43(1): 163-171.                                 Liu M, Wei Q W, Du H, et al. Auditory thresholds of Chinese
              [19]   Johnston M E, Steel A E, Espe M, et al. Survival of juvenile  sucker Myxocyprinus asiaticus[J]. Journal of Fishery Sciences
                    Chinook salmon in the Yolo Bypass and the lower Sacramento  of China, 2013, 20(4): 750-757 (in Chinese).
                    River, California[J]. San Francisco Estuary and Watershed Sci-  [30]   Lawrence B J, Smith R J F. Behavioral response of solitary fat-
                    ence, 2018, 16(2): 4.                           head  minnows,  Pimephales  promelas,  to  alarm  substance[J].
              [20]   Li  H  N,  Kleeman  A,  Kottos  T,  et  al.  Interference  of  sound  Journal of Chemical Ecology, 1989, 15(1): 209-219.

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