脊椎恒温动物冬眠时的能量和时间优化。

Pedro Goes Nogueira-de-Sá, José Eduardo Pereira Wilken Bicudo, José Guilherme Chaui-Berlinck
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引用次数: 1

摘要

在小型鸟类和哺乳动物中,冬眠是一种节约能量的特性。在阐明其进入和维持的机制方面作出了相当大的努力,但很少注意退出的问题。首先,我们证明了觉醒阶段具有一个刻板的动态:代谢率急剧增加,随后体温升高,然后是体温和代谢的衰减振荡。此外,代谢峰值比相应的恒温静息代谢率大两倍左右。然后,我们假设时间或能量可能是这一事件的关键变量,并从生理学、控制工程和热力学的基本原理中构建了一个模型。从这个模型中,我们发现刻板的唤醒模式是一种既节省时间又节省精力的解决方案。我们将分析扩展到恒温动物使用麻木的尺度,并表明与体温控制系统相关的变量与唤醒动力学相关。从这个意义上说,唤起阶段的刻板动态需要这些变量的一定轮廓,而这些变量并不随着体型的增加而保持。
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Energy and time optimization during exit from torpor in vertebrate endotherms.

Torpor is used in small sized birds and mammals as an energy conservation trait. Considerable effort has been put towards elucidating the mechanisms underlying its entry and maintenance, but little attention has been paid regarding the exit. Firstly, we demonstrate that the arousal phase has a stereotyped dynamic: there is a sharp increase in metabolic rate followed by an increase in body temperature and, then, a damped oscillation in body temperature and metabolism. Moreover, the metabolic peak is around two-fold greater than the corresponding euthermic resting metabolic rate. We then hypothesized that either time or energy could be crucial variables to this event and constructed a model from a collection of first principles of physiology, control engineering and thermodynamics. From the model, we show that the stereotyped pattern of the arousal is a solution to save both time and energy. We extended the analysis to the scaling of the use of torpor by endotherms and show that variables related to the control system of body temperature emerge as relevant to the arousal dynamics. In this sense, the stereotyped dynamics of the arousal phase necessitates a certain profile of these variables which is not maintained as body size increases.

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来源期刊
CiteScore
3.90
自引率
0.00%
发文量
51
审稿时长
3.5 months
期刊介绍: The Journal of Comparative Physiology B publishes peer-reviewed original articles and reviews on the comparative physiology of invertebrate and vertebrate animals. Special emphasis is placed on integrative studies that elucidate mechanisms at the whole-animal, organ, tissue, cellular and/or molecular levels. Review papers report on the current state of knowledge in an area of comparative physiology, and directions in which future research is needed.
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