Kiyatkin Eugene A
Behavioral Neuroscience Branch, National Institute on Drug Abuse - Intramural Research Program, National Institutes of Health, Baltimore, MD, USA.
Temperature (Austin). 2019 Dec 3;6(4):271-333. doi: 10.1080/23328940.2019.1691896. eCollection 2019.
It is well known that temperature affects the dynamics of all physicochemical processes governing neural activity. It is also known that the brain has high levels of metabolic activity, and all energy used for brain metabolism is finally transformed into heat. However, the issue of brain temperature as a factor reflecting neural activity and affecting various neural functions remains in the shadow and is usually ignored by most physiologists and neuroscientists. Data presented in this review demonstrate that brain temperature is not stable, showing relatively large fluctuations (2-4°C) within the normal physiological and behavioral continuum. I consider the mechanisms underlying these fluctuations and discuss brain thermorecording as an important tool to assess basic changes in neural activity associated with different natural (sexual, drinking, eating) and drug-induced motivated behaviors. I also consider how naturally occurring changes in brain temperature affect neural activity, various homeostatic parameters, and the structural integrity of brain cells as well as the results of neurochemical evaluations conducted in awake animals. While physiological hyperthermia appears to be adaptive, enhancing the efficiency of neural functions, under specific environmental conditions and following exposure to certain psychoactive drugs, brain temperature could exceed its upper limits, resulting in multiple brain abnormalities and life-threatening health complications.
众所周知,温度会影响所有控制神经活动的物理化学过程的动力学。也已知大脑具有高水平的代谢活动,并且用于大脑代谢的所有能量最终都会转化为热量。然而,脑温作为反映神经活动并影响各种神经功能的一个因素,这一问题仍处于阴影之中,通常被大多数生理学家和神经科学家所忽视。本综述中呈现的数据表明,脑温并不稳定,在正常生理和行为连续体中显示出相对较大的波动(2 - 4°C)。我思考了这些波动背后的机制,并讨论了脑温记录作为评估与不同自然(性、饮水、进食)和药物诱导的动机行为相关的神经活动基本变化的重要工具。我还思考了脑温的自然变化如何影响神经活动、各种稳态参数、脑细胞的结构完整性以及在清醒动物中进行的神经化学评估结果。虽然生理性体温过高似乎具有适应性,可提高神经功能的效率,但在特定环境条件下以及接触某些精神活性药物后,脑温可能会超过其上限,导致多种脑部异常和危及生命的健康并发症。