Jornod Maïwenn, Roche Dominique G
Éco-Éthologie, Institut de Biologie, Université de Neuchâtel, Neuchâtel, CH 2000, Switzerland.
Éco-Éthologie, Institut de Biologie, Université de Neuchâtel, Neuchâtel, CH 2000, Switzerland
Biol Open. 2015 Oct 9;4(11):1395-9. doi: 10.1242/bio.013508.
Fast-start escape responses are critical behaviours used by fishes during predator-prey encounters and some interactions with hetero- and conspecifics. In experimental studies, escape responses are often measured once per individual and considered representative of maximum performance. However, few studies have compared variability and repeatability in escape performances within and among individuals. Using the tropical damselfish Amblyglyphidodon curacao, we quantified inter- and intra-individual variation in behavioural and kinematic components of escape performance during repeated presentations of a stimulus at 15 min intervals. Individual maximum escape performance was repeatable through time, but there was considerable variation in the magnitude of responses both among and within fish. We found no evidence of habituation or fatigue due to repeated stimulations, suggesting that fish can be stimulated multiple times to ensure that an accurate estimate of maximum escape performance is obtained.
快速启动逃逸反应是鱼类在捕食者 - 猎物遭遇以及与异种和同种个体的一些互动过程中所使用的关键行为。在实验研究中,逃逸反应通常对每个个体测量一次,并被视为最大性能的代表。然而,很少有研究比较个体内部和个体之间逃逸性能的变异性和可重复性。我们以热带雀鲷库拉索钝塘鳢为研究对象,在以15分钟的间隔重复呈现刺激的过程中,对逃逸性能的行为和运动学成分的个体间和个体内变异进行了量化。个体的最大逃逸性能在不同时间是可重复的,但鱼类之间和个体内部的反应幅度存在相当大的差异。我们没有发现由于重复刺激而导致习惯化或疲劳的证据,这表明可以对鱼类进行多次刺激,以确保获得对最大逃逸性能的准确估计。