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Guest editor's introduction: Energy homeostasis in context

机译:客座编辑介绍:能源动态平衡

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This article is part of a Special Issue "Energy Balance".Energy homeostasis is achieved through neuroendocrine and metabolic control of energy intake, storage, and expenditure. Traditionally, these controls have been studied in an unrealistic and narrow context. The appetite for food, for example, is most often assumed to be independent of other motivations, such as sexual desire, fearfulness, and competition. Furthermore, our understanding of all aspects of energy homeostasis is based on studying males of only a few species. The baseline control subjects are most often housed in enclosed spaces, with continuous, unlimited access to food. In the last century, this approach has generated useful information, but all the while, the global prevalence of obesity has increased and remains at unprecedented levels (Ogden et al., 2013, 2014). It is likely, however, that the mechanisms that control ingestive behavior were molded by evolutionary forces, and that few, if any vertebrate species evolved in the presence of a limitless food supply, in an enclosed 0.5. ×. 1. ft space, and exposed to a constant ambient temperature of 22. +2. °C. This special issue of Hormones and Behavior therefore contains 9 review articles and 7 data articles that consider energy homeostasis within the context of other motivations and physiological processes, such as early development, sexual differentiation, sexual motivation, reproduction, seasonality, hibernation, and migration. Each article is focused on a different species or on a set of species, and most vertebrate classes are represented. Energy homeostasis is viewed in the context of the selection pressures that simultaneously molded multiple aspects of energy intake, storage, and expenditure. This approach yields surprising conclusions regarding the function of those traits and their underlying neuroendocrine mechanisms.
机译:本文是“能量平衡”特刊的一部分。能量稳态是通过神经内分泌和代谢控制能量摄入,储存和消耗来实现的。传统上,这些控件是在不切实际且狭窄的环境中进行研究的。例如,人们通常认为食物的食欲与其他动机无关,例如性欲,恐惧和竞争。此外,我们对能量稳态的方方面面的了解是基于对仅少数物种的雄性的研究。基线控制对象通常被安置在封闭的空间中,可以连续无限制地获取食物。在上个世纪,这种方法已经产生了有用的信息,但与此同时,全球肥胖症的患病率却在上升,并保持在空前的水平(Ogden等,2013,2014)。然而,控制进食行为的机制很可能是由进化力造成的,封闭的0.5中几乎没有(如果有的话)脊椎动物在无限食物供应下进化。 ×。 1.平方英尺,并暴露于22的恒定环境温度。+2。 ℃。因此,本期《激素与行为》特刊包含9篇评论文章和7篇数据文章,这些文章在其他动机和生理过程(例如早期发育,性分化,性动机,繁殖,季节性,冬眠和迁徙)的背景下考虑能量稳态。每篇文章的重点是不同的物种或一组物种,并且代表了大多数脊椎动物类别。能源动态平衡是在选择压力的背景下进行的,而选择压力会同时影响能源吸收,存储和支出的多个方面。这种方法得出关于这些特征的功能及其潜在的神经内分泌机制的令人惊讶的结论。

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