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Contribution of thermal and nonthermal factors to the regulation of body temperature in humans

机译:热和非热因素对人体体温调节的贡献

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The set point has been used to define the regulated level of body temperature, suggesting that displacements of core temperature from the set point initiate heat production (HP) and heat loss (HL) responses. Human and animal experiments have demonstrated that the responses of sweating and shivering do not coincide at a set point but rather establish a thermoeffector threshold zone. Neurophysiological studies have demonstrated that the sensor-to-effector pathways for HP and HL overlap and, in fact, mutually inhibit each other. This reciprocal inhibition theory, presumably reflecting the manner in which thermal factors contribute to homeothermy in humans, does not incorporate the effect of nonthermal factors on temperature regulation. The present review examines the actions of these nonthermal factors within the context of neuronal models of temperature regulation, suggesting that examination of these factors may provide further insights into the nature of temperature regulation. It is concluded that, although there is no evidence to doubt the existence of the HP and HL pathways reciprocally inhibiting one another, it appears that such a mechanism is of little consequence when comparing the effects of nonthermal factors on the thermoregulatory system, since most of these factors seem to exert their influence in the region after the reciprocal cross-inhibition. At any given moment, both thermal and several nonthermal factors will be acting on the thermoregulatory system. It may, therefore, not be appropriate to dismiss the contribution of either when discussing the regulation of body temperature in humans.
机译:该设定点已用于定义体温的调节水平,表明核心温度相对于设定点的位移会引发热量产生(HP)和热损失(HL)响应。人类和动物实验证明,出汗和发抖的反应在设定点并不重合,而是建立了一个热效应阈值区。神经生理学研究表明,HP和HL的传感器到效应子途径重叠,并且实际上相互抑制。这种相互抑制的理论大概反映了热因素促成人类体内热疗的方式,但并未纳入非热因素对温度调节的影响。本综述在温度调节的神经元模型的背景下检查了这些非热因素的作用,表明对这些因素的检查可以为温度调节的性质提供进一步的见解。结论是,尽管没有证据怀疑HP和HL途径是否相互抑制,但是当比较非热因素对体温调节系统的影响时,似乎这种机制几乎没有影响。这些因素似乎在相互交叉抑制后在该区域发挥了作用。在任何给定时刻,热因素和几个非热因素都将作用于温度调节系统。因此,在讨论人体体温调节时,不宜忽略其中任何一种的贡献。

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