首页> 美国卫生研究院文献>Journal of Neurophysiology >50 Years of Microneurography: Insights into Neural Mechanisms in Humans: Fifty years of microneurography: learning the language of the peripheral sympathetic nervous system in humans
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50 Years of Microneurography: Insights into Neural Mechanisms in Humans: Fifty years of microneurography: learning the language of the peripheral sympathetic nervous system in humans

机译:Microneurography的50年:对人类神经机制的见解:microneurography的五十年:学习人类周围交感神经系统的语言

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摘要

As a primary component of homeostasis, the sympathetic nervous system enables rapid adjustments to stress through its ability to communicate messages among organs and cause targeted and graded end organ responses. Key in this communication model is the pattern of neural signals emanating from the central to peripheral components of the sympathetic nervous system. But what is the communication strategy employed in peripheral sympathetic nerve activity (SNA)? Can we develop and interpret the system of coding in SNA that improves our understanding of the neural control of the circulation? In 1968, Hagbarth and Vallbo (Hagbarth KE, Vallbo AB. Acta Physiol Scand 74: 96–108, 1968) reported the first use of microneurographic methods to record sympathetic discharges in peripheral nerves of conscious humans, allowing quantification of SNA at rest and sympathetic responsiveness to physiological stressors in health and disease. This technique also has enabled a growing investigation into the coding patterns within, and cardiovascular outcomes associated with, postganglionic SNA. This review outlines how results obtained by microneurographic means have improved our understanding of SNA outflow patterns at the action potential level, focusing on SNA directed toward skeletal muscle in conscious humans.
机译:作为动态平衡的主要组成部分,交感神经系统能够通过在器官之间传递信息并引起有针对性和分级的终末器官反应的能力来快速调节压力。这种交流模型的关键是从交感神经系统的中枢到周围组件发出的神经信号的模式。但是,外周交感神经活动(SNA)采用的交流策略是什么?我们是否可以开发和解释SNA中的编码系统,从而增进我们对循环神经控制的理解? 1968年,Hagbarth和Vallbo(Hagbarth KE,Vallbo AB。生理生理学扫描74:96-108,1968)报道了首次使用微神经​​成像方法记录有意识的人周围神经的交感神经放电,从而可以量化静止和有交感的SNA对健康和疾病中生理应激源的反应能力。这项技术还使人们能够对节后SNA内的编码模式以及与之相关的心血管结局进行越来越多的研究。这篇综述概述了通过微神经描记术方法获得的结果如何在行动电位水平上改善了我们对SNA流出模式的理解,重点是针对有意识的人针对骨骼肌的SNA。

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