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Remote physiological monitoring provides unique insights on the cardiovascular performance and stress responses of freely swimming rainbow trout in aquaculture

机译:远程生理监测为水产养殖中自由游泳的虹鳟鱼的心血管性能和应激反应提供了独特的见解

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摘要

Investigating the mechanisms that fish employ to maintain homeostasis in their everyday life requires measurements of physiological and behavioural responses in the field. With multivariate bio-loggers, we continuously measured gastrointestinal blood flow (GBF), heart rate, activity and body temperature in rainbow trout (Oncorhynchus mykiss) swimming freely amongst ~5000 conspecifics in a sea cage. Our findings clearly demonstrate that while both acute aquaculture-related stress and spontaneous activity resulted in transient reductions in GBF (i.e. reductions of up to 65%), recovery from stressful handling practices subsequently involved a substantial and prolonged gastrointestinal hyperemia far beyond the level observed prior to the stressor. The gastrointestinal hyperemia may be necessary to repair the damage to the gastrointestinal tract caused by acute stress. Furthermore, heart rate responses to acute stress or voluntary activity differed depending on the individual’s physiological state. Stressed fish (i.e. mean heart rates >70 beats min−1) exhibited a bradycardic response to acute stress or activity, whereas fish with mean heart rates <60 beats min−1 instead demonstrated strong tachycardic responses. Remote monitoring of physiological and behavioural variables using bio-loggers can provide unique insights into ‘real-life’ responses of animals, which can largely differ from the responses observed in confined laboratory settings.
机译:要研究鱼类维持日常生活中稳态的机制,就需要对田间的生理和行为反应进行测量。通过多变量生物记录仪,我们连续测量了在约5000个物种在一个海笼中自由游动的虹鳟(Oncorhynchus mykiss)的胃肠道血流量(GBF),心率,活动和体温。我们的发现清楚地表明,尽管与水产养殖相关的急性压力和自发活动都导致GBF的短暂降低(即降低高达65%),但从紧张的操作方式中恢复之后,胃肠道充血和持续的充血时间大大超过了先前观察到的水平。给压力源。可能需要胃肠道充血来修复急性应激引起的胃肠道损害。此外,根据个人的生理状态,对急性压力或自愿活动的心率反应也有所不同。受应激的鱼(即平均心率> 70次/分 -1 )表现出对急性应激或活动的心动过缓反应,而受鱼的平均心率<60次/分 sup> -1 相反,表现出强烈的心动过速反应。使用生物记录仪对生理和行为变量进行远程监控可以提供对动物“真实”反应的独特见解,这与有限的实验室环境中观察到的反应大不相同。

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