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理解心血管系统中枢神经控制的里程碑。

Landmarks in understanding the central nervous control of the cardiovascular system.

作者信息

Coote John H

机构信息

Division of Neuroscience, The Medical School, University of Birmingham, Birmingham B15 2TT, UK.

出版信息

Exp Physiol. 2007 Jan;92(1):3-18. doi: 10.1113/expphysiol.2006.035378. Epub 2006 Oct 9.

Abstract

In this Paton Lecture I have tried to trace the key experiments that have developed ideas on how the brain regulates the cardiovascular system. It is a personal view and inevitably, owing to constraints on space and time, I have not been able to cover areas such as the nucleus tractus solitarius and cardiac vagal neurones, although I acknowledge that some may consider the story is incomplete without them. Starting with the crucial discovery of vasomotor nerves and 'vasomotor tone', the patterns of activity in sympathetic nerves which led to the important idea of central oscillating networks of neurones are described. I discuss how this knowledge has informed current controversies on the origin of vasomotor activity in presympathetic neurones in the ventral medulla, which identify intrinsic pacemaker activity or synaptic input from multiple oscillators as prime mechanisms. I present an emerging view that the role of other regions of the brain, in particular supramedullary sites, has been underplayed. These regions are pivotal for the non-uniform distribution of cardiac output that is unique to each reflex and behavioural state. I discuss the most recent evidence for 'central command' neurones that offers a plausible explanation for how these patterns of sympathetic activity are achieved. Finally, I stress the importance of these current ideas to the understanding of pathological changes in sympathetic activity in cardiovascular diseases such as hypertension or congestive heart failure.

摘要

在本次佩顿讲座中,我试图追溯那些推动了关于大脑如何调节心血管系统相关理念发展的关键实验。这是个人观点,并且由于时间和篇幅限制,我未能涵盖孤束核和心脏迷走神经元等领域,尽管我承认有些人可能认为没有这些内容这个故事是不完整的。从血管运动神经和“血管运动张力”的关键发现开始,描述了交感神经活动模式,这些模式引出了神经元中枢振荡网络这一重要概念。我讨论了这些知识如何为当前关于延髓腹侧交感神经节前神经元血管运动活动起源的争议提供信息,这些争议将内在起搏器活动或来自多个振荡器的突触输入视为主要机制。我提出了一种新出现的观点,即大脑其他区域,特别是延髓以上部位的作用一直被低估。这些区域对于每种反射和行为状态所特有的心输出量非均匀分布至关重要。我讨论了“中枢指令”神经元的最新证据,这些证据为交感神经活动模式是如何实现的提供了合理的解释。最后,我强调这些当前观点对于理解高血压或充血性心力衰竭等心血管疾病中交感神经活动的病理变化的重要性。

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