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心血管系统的中枢神经控制:当前观点。

Central neural control of the cardiovascular system: current perspectives.

机构信息

School of Medical Sciences (Physiology) and Bosch Institute, The University of Sydney, Sydney, New South Wales, Australia

出版信息

Adv Physiol Educ. 2016 Sep;40(3):283-96. doi: 10.1152/advan.00027.2016.

Abstract

This brief review, which is based on a lecture presented at the American Physiological Society Teaching Refresher Course on the Brain and Systems Control as part of the Experimental Biology meeting in 2015, aims to summarize current concepts of the principal mechanisms in the brain that regulate the autonomic outflow to the cardiovascular system. Such cardiovascular regulatory mechanisms do not operate in isolation but are closely coordinated with respiratory and other regulatory mechanisms to maintain homeostasis. The brain regulates the cardiovascular system by two general means: 1) feedforward regulation, often referred to as "central command," and 2) feedback or reflex regulation. In most situations (e.g., during exercise, defensive behavior, sleep, etc.), both of these general mechanisms contribute to overall cardiovascular homeostasis. The review first describes the mechanisms and central circuitry subserving the baroreceptor, chemoreceptor, and other reflexes that work together to regulate an appropriate level of blood pressure and blood oxygenation and then considers the brain mechanisms that defend the body against more complex environmental challenges, using dehydration and cold and heat stress as examples. The last section of the review considers the central mechanisms regulating cardiovascular function associated with different behaviors, with a specific focus on defensive behavior and exercise.

摘要

这篇简要的综述基于 2015 年在美国生理学会教学进修课程上的一次演讲,该课程是实验生物学会议的一部分,旨在总结大脑中调节心血管系统自主输出的主要机制的当前概念。这种心血管调节机制不是孤立运作的,而是与呼吸和其他调节机制密切协调,以维持体内平衡。大脑通过两种一般方式调节心血管系统:1)前馈调节,通常称为“中枢指令”,和 2)反馈或反射调节。在大多数情况下(例如,在运动、防御行为、睡眠等期间),这两种一般机制都有助于整体心血管的体内平衡。综述首先描述了压力感受器、化学感受器和其他反射的机制和中枢回路,这些反射共同作用以调节适当的血压和血氧水平,然后考虑了大脑机制,这些机制使用脱水、冷和热应激作为例子,保护身体免受更复杂的环境挑战。综述的最后一部分考虑了与不同行为相关的心血管功能的中枢机制,特别关注防御行为和运动。

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