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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Gravity and thermoregulation: metabolic changes and circadian rhythms.
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Gravity and thermoregulation: metabolic changes and circadian rhythms.

机译:重力和体温调节:代谢变化和昼夜节律。

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摘要

Gravity appears to alter thermoregulation through changes in both the regulated level of body temperature and the rhythmic organization of temperature regulation. Gravity has been hypothesized to have an associated metabolic cost. Increased resting energy expenditure and dietary intake have been observed in animals during centrifuge experiments at hypergravity. Thus far, only animals have shown a corresponding reduction in metabolism in microgravity. Altered heat loss has been proposed as a response to altered gravitational environments, but remains documented only as changes in skin temperature. Changes in circadian timing, including the body temperature rhythm, have been shown in both hypergravity and microgravity, and probably contribute to alterations in sleep and performance. Changes in body temperature regulation may result from circadian disturbance, from the direct or indirect actions of gravity on the regulated temperature, or from changes in thermoregulatory effectors (heat production and heat loss) due to altered gravitational load and convective changes. To date, however, we have little data on the underlying thermoregulatory changes in altered gravity, and thus the precise mechanisms by which gravity alters temperature regulation remain largely unknown.
机译:重力似乎通过体温调节水平和温度调节的节奏组织的变化来改变体温调节。假设重力具有相关的代谢成本。在超重力下的离心实验中,已经观察到动物增加了静息能量消耗和饮食摄入。迄今为止,只有动物显示出微重力代谢的相应减少。已经提出了改变的热损失作为对改变的重力环境的响应,但是仍然仅作为皮肤温度的变化被记录。在超重力和微重力中都已显示出昼夜节律的变化,包括体温节律,这可能会导致睡眠和机能的改变。人体温度调节的变化可能是由于昼夜节律紊乱,重力对调节温度的直接或间接作用,或者是由于重力负荷和对流变化引起的温度调节效应器的变化(热量产生和热损失)。然而,迄今为止,关于重力变化的潜在温度调节变化的数据很少,因此,很大程度上未知的重力变化温度调节机制。

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