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幼年短吻鲟的游泳性能():时间间隔和速度增量对临界游泳测试的影响。

Swimming performance in juvenile shortnose sturgeon (): the influence of time interval and velocity increments on critical swimming tests.

作者信息

Downie Adam T, Kieffer James D

机构信息

Australian Research Council Centre of Excellence for Coral Reef Studies, James Cook University, Townsville, 4811 QLD, Australia.

Department of Biological Sciences and MADSAM Sturgeon Eco-Physiology Lab, University of New Brunswick, Saint John, NB, CanadaE2L 4L5.

出版信息

Conserv Physiol. 2017 Jun 30;5(1):cox038. doi: 10.1093/conphys/cox038. eCollection 2017.

Abstract

The most utilized method to measure swimming performance of fishes has been the critical swimming speed (UCrit) test. In this test, the fish is forced to swim against an incrementally increasing flow of water until fatigue. Before the water velocity is increased, the fish swims at the water velocity for a specific, pre-arranged time interval. The magnitude of the velocity increments and the time interval for each swimming period can vary across studies making the comparison between and within species difficult. This issue has been acknowledged in the literature, however, little empirical evidence exists that tests the importance of velocity and time increments on swimming performance in fish. A practical application for fish performance is through the design of fishways that enable fish to bypass anthropogenic structures (e.g. dams) that block migration routes, which is one of the causes of world-wide decline in sturgeon populations. While fishways will improve sturgeon conservation, they need to be specifically designed to accommodate the swimming capabilities specific for sturgeons, and it is possible that current swimming methodologies have under-estimated the swimming performance of sturgeons. The present study assessed the UCrit of shortnose sturgeon using modified UCrit to determine the importance of velocity increment (5 and 10 cm s) and time (5, 15 and 30 min) intervals on swimming performance. UCrit was found to be influenced by both time interval and water velocity. UCrit was generally lower in sturgeon when they were swum using 5cm s compared with 10 cm s increments. Velocity increment influences the UCrit more than time interval. Overall, researchers must consider the impacts of using particular swimming criteria when designing their experiments.

摘要

测量鱼类游泳能力最常用的方法是临界游泳速度(UCrit)测试。在该测试中,鱼被迫逆着逐渐增加的水流游动,直至疲劳。在水流速度增加之前,鱼会在特定的、预先安排好的时间间隔内以该水流速度游动。不同研究中,速度增量的幅度和每个游泳阶段的时间间隔可能会有所不同,这使得种间和种内比较变得困难。文献中已认识到这个问题,然而,几乎没有实证证据检验速度和时间增量对鱼类游泳能力的重要性。鱼类能力的一个实际应用是通过设计鱼道,使鱼能够绕过阻碍洄游路线的人为建筑(如水坝),这是全球鲟鱼种群数量下降的原因之一。虽然鱼道将改善鲟鱼的保护状况,但需要专门设计以适应鲟鱼特有的游泳能力,而且目前的游泳方法可能低估了鲟鱼的游泳能力。本研究使用改良的UCrit评估了短吻鲟的UCrit,以确定速度增量(5厘米/秒和10厘米/秒)和时间(5分钟、15分钟和30分钟)间隔对游泳能力的重要性。结果发现,UCrit受时间间隔和水流速度的影响。与以10厘米/秒的增量游动相比,鲟鱼以5厘米/秒的增量游动时,UCrit通常较低。速度增量对UCrit的影响大于时间间隔。总体而言,研究人员在设计实验时必须考虑使用特定游泳标准的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee44/5550615/73b831a1ce3d/cox038f01.jpg

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