Department of Biomolecular Medicine, Center of Medical Genetics, Ghent University, Ghent, Belgium.
Zebrafish. 2021 Feb;18(1):29-41. doi: 10.1089/zeb.2020.1948. Epub 2021 Jan 12.
The popularity of zebrafish in both basic biological and biomedical research has led to an increased need for understanding their behavior. Locomotor behavior is an important outcome of different factors, such as specific genotypes or external stimuli that influence the nervous and musculoskeletal system. Locomotion can be studied by forced swimming in a swim tunnel, a device capable of generating a laminar water flow at different speeds in a chamber where zebrafish can be placed. However, commercially available swim tunnels are relatively expensive and in-house built systems are mostly presented without clear building instructions or proper validation procedures. In this study, we developed an alternative, cheap (<250 euro), and user-friendly, but customizable benchtop swim tunnel, called the "" (ZE-Tunnel). Detailed step-by-step instructions on how to construct the tunnel components, including the frame, mechanical, and electric components are given. The ZE-Tunnel was reliably used to exercise fish for prolonged periods and its performance was successfully validated by replicating previously published experiments on critical speed testing in zebrafish. Finally, implementation of behavioral video analysis using freely available motion-tracking software showed differences in swimming dynamics in the skeletal zebrafish mutant.
斑马鱼在基础生物学和生物医学研究中的普及,使得人们对其行为的理解需求增加。运动行为是特定基因型或外部刺激等多种因素影响神经和骨骼肌肉系统的重要结果。在游泳隧道中进行强制游泳可以研究运动行为,游泳隧道是一种能够在腔室内产生不同速度层流的装置,腔室内可以放置斑马鱼。然而,市售的游泳隧道相对昂贵,而内部构建的系统大多没有清晰的构建说明或适当的验证程序。在这项研究中,我们开发了一种替代的、廉价(<250 欧元)、用户友好但可定制的台式游泳隧道,称为“ZE-Tunnel”。详细的逐步说明介绍了如何构建隧道组件,包括框架、机械和电子组件。ZE-Tunnel 可可靠地用于长时间锻炼鱼类,并且通过复制先前在斑马鱼临界速度测试方面的实验,成功验证了其性能。最后,使用免费的运动跟踪软件实施行为视频分析,显示了骨骼斑马鱼突变体游泳动力学的差异。