[1] 王继隆, 刘伟, 杨文波, 等. 绥芬河大麻哈鱼增殖放流效果评估. 应用生态学报, 2019, 30(10): 3572-3578 [2] McGinnity P, Prodöhl P, Ferguson A, et al. Fitness reduction and potential extinction of wild populations of Atlantic salmon, Salmo salar, as a result of interactions with escaped farm salmon. Proceedings of the Royal Society of London Series B: Biological Sciences, 2003, 270: 2443-2450 [3] Kallio-Nyberg I, Romakkaniemi A, Jokikokko E, et al. Differences between wild and reared Salmo salar stocks of two northern Baltic Sea rivers. Fish Research, 2015, 165: 85-95 [4] 王鸿泽, 陶江, 常剑波. 中华鲟濒危状况与物种保护对策的评估分析. 长江流域资源与环境, 2019, 28(9): 2100-2108 [5] Hackbarth A, Moraes G. Biochemical responses of matrinxã Brycon cephalus (Günther,1869) after sustained swimming. Aquaculture Research, 2006, 37: 1070-1078 [6] Castro V, Grisdale-Helland B, Helland SJ, et al. Aerobic training stimulates growth and promotes disease resistance in Atlantic salmon (Salmo salar). Comparative Biochemistry and Physiology, 2011, 160: 278-290 [7] Davison W, Goldspink G. The effect of prolonged exercise on the lateral musculature of the brown trout (Salmo trutta). Journal of Experimental Biology, 1978, 74: 115-122 [8] Larsen BK, Skov PV, McKenzie DJ, et al. The effects of stocking density and low level sustained exercise on the energetic efficiency of rainbow trout (Oncorhynchus mykiss) reared at 19 ℃. Aquaculture, 2012, 324: 226-233 [9] Dougan MC. Growth and Development of Chinook Sal-mon, Oncorhynchus tshawytscha: Effects of Exercise Training and Seawater Transfer. PhD Thesis. Christchurch, New Zealand: University of Canterbury, 1993 [10] Liu G, Wu YJ, Qin XH, et al. The effect of aerobic exercise training on growth performance, innate immune response and disease resistance in juvenile Schizothorax prenanti. Aquaculture, 2018, 486: 18-25 [11] Li X, Yuan J, Fu S, et al. The effect of sustained swimming exercise on the growth performance, muscle cellularity and flesh quality of juvenile qingbo (Spinibarbus sinensis). Aquaculture, 2016, 465: 287-295 [12] Hou Q, Fu S, Huang T, et al. Effects of aerobic exercise training on the growth, swimming performance, antipredation ability and immune parameters of juvenile Procypris rabaudi. Animals, 2022, 12: 257 [13] 夏伟. 运动训练对鲤鱼(Cyprinus carpio)幼鱼游泳能力的影响及其代谢机制探讨. 硕士论文. 重庆: 重庆师范大学, 2012 [14] Li X, Cao ZD, Peng J, et al. The effect of exercise training on the metabolic interaction between digestion and locomotion in juvenile darkbarbel catfish (Peltebagrus vachelli). Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 2010, 156: 67-73 [15] Pearson MP, Spriet LL, Stevens ED. Effect of sprint training on swim performance and white muscle metabolism during exercise and recovery in rainbow trout (Salmo gairdneri). Journal of Experimental Biology, 1990, 149: 45-60 [16] Scarabello M, Heigenhauser GF, Wood CM. Gas exchange, metabolite status and excess post-exercise oxygen consumption after repetitive bouts of exhaustive exercise in juvenile rainbow trout. Journal of Experimental Biology, 1992, 167: 155-169 [17] Lackner R, Wieser W, Huber M, et al. Responses of intermediary metabolism to acute handling stress and recovery in untrained and trained Leuciscus cephalus (Cyprinidae, Teleostei). Journal of Experimental Biology, 1988, 140: 393-404 [18] Anttila K, Mánttári S, Járvilehto M. Effects of different training protocols on Ca2+ handling and oxidative capa-city in skeletal muscle of Atlantic salmon (Salmo salar L.). Journal of Experimental Biology, 2006, 209: 2971-2978 [19] Cui Z, Yang Z, Shen L, et al. Complex modal analysis of the movements of swimming fish propelled by body and/or caudal fin. Wave Motion, 2018, 78: 83-97 [20] 蔡露, 胡望斌, 赵萍, 等. 鱼感应流速对体长的响应及在过鱼设施流速设计中的应用. 农业工程学报, 2018, 34(2): 176-181 [21] 金志军, 马卫忠, 张袁宁, 等. 异齿裂腹鱼通过鱼道内流速障碍能力及行为. 水利学报, 2018, 49(4): 512-522 [22] Penghan LY, Cao ZD, Fu SJ. The effect of temperature and dissolved oxygen on swimming performance in crucian carp. Aquatic Biology, 2014, 21: 57-65 [23] 王健伟. 低氧对鳊鱼幼鱼临界游泳和匀加速游泳能力的影响及其生化机制. 硕士论文. 重庆: 重庆师范大学, 2015 [24] 张硕, 陈勇. 黑鲪幼鱼趋流性的初步研究. 上海水产大学学报, 2005, 14(3): 3282-3287 [25] 闫冠杰, 曹振东, 彭姜岚, 等. 运动锻炼对鲤鱼幼鱼形态参数的影响. 重庆师范大学学报: 自然科学版, 2011, 28(3): 18-21 [26] Martin CI, Johnston IA. Endurance exercise training in common carp Cyprinus carpio L. induces proliferation of myonuclei in fast muscle fibres and slow muscle fibre hypertrophy. Journal of Fish Biology, 2010, 69: 1221-1227 [27] Cano-Barbacil C, Radinger J, Argudo M, et al. Key factors explaining critical swimming speed in freshwater fish: A review and statistical analysis for Iberian species. Scientific Reports, 2020, 10: 1-12 [28] 鲁艳, 李茂华, 甘维熊, 等. 运动训练和停训对鲈鲤幼鱼游泳能力的影响. 四川动物, 2019, 38(4): 361-367 [29] Zhou L, Yan XY, Li XM, et al. Effect of exercise trai-ning on swimming performance, survival under predation and hypoxia tolerance in an endangered fish species in China. Marine and Freshwater Behaviour and Physio-logy, 2019, 52: 67-82 [30] Li X, Zhang Y, Li X, et al. Sustained exercise-trained juvenile black black carp (Mylopharyngodon piceus) at a moderate water velocity exhibit improved aerobic swimming performance and increased postprandial metabolic responses. Biology Open, 2018, 7: bio032425 [31] Tang N, Wang X, Li Y, et al. Laboratory studies on the rheotaxis of fish under different attraction flow conditions. International Journal of Environmental Research and Public Health, 2022, 19: 5744 [32] Coombs S, Bak-Coleman J, Montgomery J. Rheotaxis revisited: A multi-behavioral and multisensory perspective on how fish orient to flow. Journal of Experimental Biology, 2020, 223: jeb223008 [33] Triantafyllou MS, Weymouth GD, Miao J. Biomimetic survival hydrodynamics and flow sensing. Annual Review of Fluid Mechanics, 2016, 48: 1-24 [34] 马壮, 席杨, 张泽鹏, 等. 游泳训练对牙鲆幼鱼生长、摄食、呼吸排泄及非特异性免疫的影响. 第三届现代海洋(淡水)牧场学术研讨会. 中国海南海口, 2019: 1 [35] Tan J, Li H, Guo W, et al. Swimming Performance of Four Carps on the Yangtze River for Fish Passage Design. Sustainability, 2021, 13: 1575 [36] Rubio-Gracia F, Garcia-Berthou E, Guasch H, et al. Size-related effects and the influence of metabolic traits and morphology on swimming performance in fish. Current Zoology, 2020, 66: 493-503 [37] 张硕, 陈勇. 黑鲪幼鱼趋流性的初步研究. 上海水产大学学报, 2005, 14(3): 3282-3287 [38] Ke S, Tu Z, Goerig E, et al. Swimming behaviour of silver carp (Hypophthalmichthys molitrix) in response to turbulent flow induced by a D-cylinder. Journal of Fish Biology, 2022, 100: 486-497 [39] Li M, Shi X, Jin Z, et al. Behaviour and ability of a cyprinid (Schizopygopsis younghusbandi) to cope with accelerating flows when migrating downstream. River Research and Applications, 2021, 37: 1168-1179 [40] Liao JC. A review of fish swimming mechanics and behaviour in altered flows. Philosophical Transactions of the Royal Society B: Biological Sciences, 2007, 362: 1973-1993 |