Graduate School of Integrated Sciences for Life, Hiroshima University, 1-4-4 Kagamiyama, Higashihiroshima 739-8528, Japan.
Physiol Behav. 2022 Feb 1;244:113665. doi: 10.1016/j.physbeh.2021.113665. Epub 2021 Dec 3.
Bioelectric signals related to ventilatory movements in fish can be detected via externally located electrodes. In this study, a technique to continuously monitor the electric ventilatory signals in free-swimming zebrafish was developed. This technique was applied to monitoring ventilation activity as a physiological measure in conjunction with various behavioral measures in a novel tank environment. It was found that in addition to ventilation rate, time domain analysis of changes in ventilation rate is useful for evaluating the emotional state of zebrafish. By integrating the physiological and behavioral measures in analyses, a 1 h novel tank test trial revealed that the habituation process involves two phases. The first phase, which lasted 10 min, involved rapid attenuation of the initial fear/anxiety response to encountering a novel environment. The second phase lasted 20 min and involved further attenuation of anxiety and an increase in exploration behavior. These data suggest that combining ventilation-related physiological measures with conventional behavioral measures enables multidimensional examination of the habituation process in a novel tank environment with more precision than is possible when relying on behavioral responses alone.
通过外部电极可以检测到与鱼类呼吸运动相关的生物电信号。在这项研究中,开发了一种连续监测自由游动斑马鱼电呼吸信号的技术。该技术被应用于监测通气活动,作为一种生理测量方法,与新型水箱环境中的各种行为测量方法相结合。结果发现,除了通气率外,通气率变化的时域分析对于评估斑马鱼的情绪状态也很有用。通过将生理和行为测量方法整合到分析中,1 小时的新型水箱测试表明,习惯化过程涉及两个阶段。第一阶段持续 10 分钟,涉及对遇到新环境的初始恐惧/焦虑反应的快速衰减。第二阶段持续 20 分钟,涉及焦虑的进一步衰减和探索行为的增加。这些数据表明,将与通气相关的生理测量方法与传统的行为测量方法相结合,能够比仅依赖行为反应更精确地多维检查新型水箱环境中的习惯化过程。