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Metabolic depression in fish measured by direct calorimetry: A review

机译:直接量热法测定鱼体内代谢性抑郁症的研究进展

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摘要

In nature under adverse conditions like low oxygen conditions or starvation fish often lower their metabolism: 'metabolic depression'. This strategy of lowering the metabolic rate is a survival strategy and is used to save energy stores and diminish end-product accumulation. The overall metabolic rate of animals can be deduced by measuring metabolic processes such as oxygen consumption, but the ultimate method is measuring heat flow. In this review, we will summarise the available data about metabolic depression measuring heat flow, i.e. by direct calorimetry in fishes, which were carried out almost exclusively with a 1-I flow through calorimeter. Using deconvolution techniques the time constant of this calorimeter was measured that allowed to estimate the time course of metabolic depression, which was found to take place on a time scale of 20-30 min. We demonstrated that metabolic depression is species dependent. Goldfish, eel and tilapia show metabolic depression tinder low oxygen conditions while this is not the case for common carp. in addition it is shown that metabolic depression is flexible and increases with decreasing oxygen availability. Furthermore using a video analysing system we demonstrated that metabolic depression is not caused by a reduction of external activity. As heart rate falls dramatically during metabolic depression as shown by small wireless transmitters, we hypothesise that blood flow reduction might be the proximate cause for metabolic depression.
机译:在自然界中,低氧条件或饥饿等不利条件下,鱼通常会降低其新陈代谢:“代谢性抑郁”。降低代谢率的这种策略是一种生存策略,用于节省能量存储并减少最终产品的积累。可以通过测量代谢过程(例如氧气消耗)来推断动物的总体代谢率,但最终的方法是测量热流。在这篇综述中,我们将总结有关代谢抑制测量热流的可用数据,即通过直接量热法在鱼类中进行的数据,这些数据几乎仅通过1-I流经热量计进行。使用去卷积技术,测量了该量热仪的时间常数,该时间量允许估计代谢抑制的时间过程,发现该过程发生在20至30分钟的时间范围内。我们证明了代谢抑制是物种依赖性的。金鱼,鳗鱼和罗非鱼显示出低氧条件下的代谢性抑郁症,而鲤鱼则不然。此外,还显示出代谢抑制是灵活的,并且随着氧气供应的减少而增加。此外,使用视频分析系统,我们证明了代谢抑制不是由外部活动减少引起的。如小型无线发射器所示,在代谢抑制期间心率急剧下降时,我们假设血流量减少可能是代谢抑制的直接原因。

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