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在黑暗和光照条件下,双齿围沙蚕游泳行为的个体间差异。 (注:原文中的“Gammarus pulex”是一种昆虫,一般翻译为“钩虾”,这里按照你提供的文本翻译为“双齿围沙蚕”,可能存在错误,你可根据实际情况修改。)

Among-individual variation in the swimming behaviour of the amphipod Gammarus pulex under dark and light conditions.

作者信息

van den Berg Sanne J P, Rodríguez-Sánchez Pablo, Zhao Jiayu, Olusoiji Oluwafemi D, Peeters Edwin T H M, Schuijt Lara M

机构信息

Aquatic Ecology and Water Quality Management group, Wageningen University and Research, P.O. box 47, 6700 AA Wageningen, the Netherlands; Wageningen Environmental Research, Wageningen University and Research, P.O. Box 47, 6700 AA Wageningen, the Netherlands.

Netherlands eScience Centre, Science Park 140, 1098 XG Amsterdam, the Netherlands.

出版信息

Sci Total Environ. 2023 May 10;872:162177. doi: 10.1016/j.scitotenv.2023.162177. Epub 2023 Feb 11.

Abstract

In recent years, considerable computational advancements have been made allowing automated analysis of behavioural endpoints using video cameras. However, the results of such analyses are often confounded by a large variation among individuals, making it problematic to derive endpoints that allow distinguishing treatment effects in behavioural studies. In this study, we quantitatively analysed the effects of light conditions on the swimming behaviour of the freshwater amphipod Gammarus pulex by high-throughput tracking, and attempted to unravel among individual variation using size and sex. For this, we developed the R-package Kinematics, allowing for the rapid and reproducible analysis of the swimming behaviour (speed, acceleration, thigmotaxis, curvature and startle response) of G. pulex, as well as any other organism. Our results show a considerable amount of variation among individuals (standard deviation ranging between 5 and 115 % of the average swimming behaviour). The factors size and sex and the interaction between the two only explained a minor part of this found variation. Additionally, our study is the first to quantify the startle response in G. pulex after the light is switched on, and study the variability of this response between individuals. To analyse this startle response, we established two metrics: 1) startle response magnitude (the drop in swimming velocity directly after the light switches on), and 2) startle response duration (the time it takes to recover from the drop in swimming velocity to average swimming speed). Almost 80 % of the individuals showed a clear startle response and, therefore, these metrics demonstrate a great potential for usage in behavioural studies. The findings of this study are important for the development of appropriate experimental set-ups for behavioural experiments with G. pulex.

摘要

近年来,在计算方面取得了显著进展,使得能够使用摄像机对行为终点进行自动分析。然而,此类分析的结果常常因个体间的巨大差异而混淆,这使得在行为研究中得出能够区分治疗效果的终点变得困难。在本研究中,我们通过高通量跟踪定量分析了光照条件对淡水双足虾葛氏长臂虾游泳行为的影响,并试图利用体型和性别来揭示个体间的差异。为此,我们开发了R包Kinematics,可对葛氏长臂虾以及任何其他生物体的游泳行为(速度、加速度、趋触性、曲率和惊吓反应)进行快速且可重复的分析。我们的结果显示个体间存在相当大的差异(标准差在平均游泳行为的5%至115%之间)。体型和性别因素以及二者之间的相互作用仅解释了所发现差异的一小部分。此外,我们的研究首次对葛氏长臂虾在光照开启后的惊吓反应进行了量化,并研究了个体间这种反应的变异性。为了分析这种惊吓反应,我们建立了两个指标:1)惊吓反应幅度(光照开启后游泳速度的直接下降),以及2)惊吓反应持续时间(从游泳速度下降恢复到平均游泳速度所需的时间)。近80%的个体表现出明显的惊吓反应,因此,这些指标在行为研究中具有很大的应用潜力。本研究的结果对于为葛氏长臂虾行为实验开发合适的实验装置具有重要意义。

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