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定义运动性过度通气的神经回路。

Defining the neurocircuitry of exercise hyperpnoea.

机构信息

Department of Physiology, Anatomy and Genetics, Sherrington Building, Parks Road, Oxford OX1 3PT, UK.

出版信息

J Physiol. 2014 Feb 1;592(3):433-44. doi: 10.1113/jphysiol.2013.261586. Epub 2013 Aug 5.

Abstract

One hundred years ago in this journal, Krogh and Lindhard published a seminal paper highlighting the importance of the brain in the control of breathing during exercise. This symposium report reviews the historical developments that have taken place since 1913, and attempts to place the detailed neurocircuitry thought to underpin exercise hyperpnoea into context by focusing on key structures that might form the command network. With the advent of enhanced neuroimaging and functional neurosurgical techniques, a unique window of opportunity has recently arisen to target potential circuits in humans. Animal studies have identified a priori sites of interest in mid-brain structures, in particular the subthalamic locomotor region (subthalamic nucleus, STN) and the periaqueductal grey (PAG), which have now been recorded from in humans during exercise. When all data are viewed in an integrative manner, the PAG, in particular the lateral PAG, and aspects of the dorsal lateral PAG, appear to be key communicating circuitry for 'central command'. Moreover, the PAG also fulfils many requirements of a command centre. It has functional connectivity to higher centres (dorsal lateral prefrontal cortex) and the basal ganglia (in particular, the STN), and receives a sensory input from contracting muscle, but, importantly, it sends efferent information to brainstem nuclei involved in cardiorespiratory control.

摘要

一百年前,在本刊上,克罗格(Krogh)和林德哈(Lindhard)发表了一篇开创性的论文,强调了大脑在运动时控制呼吸中的重要性。本专题报告回顾了自 1913 年以来发生的历史发展,并试图通过关注可能构成命令网络的关键结构,将被认为是运动性过度通气的基础的详细神经回路置于背景中。随着神经影像学和功能性神经外科技术的进步,最近出现了一个独特的机会窗口,可以在人类中针对潜在的回路。动物研究已经确定了中脑结构中预先感兴趣的部位,特别是丘脑下运动区(丘脑下核,STN)和导水管周围灰质(periaqueductal grey,PAG),这些部位在人类运动时已经从记录中得到证实。当以综合的方式查看所有数据时,PAG,特别是外侧 PAG 和背外侧 PAG 的某些方面,似乎是“中央命令”的关键通信回路。此外,PAG 还满足了命令中心的许多要求。它与高级中枢(背外侧前额叶皮层)和基底神经节(特别是 STN)具有功能连接,并且从收缩的肌肉接收感觉输入,但重要的是,它向涉及心肺控制的脑干核发送传出信息。

相似文献

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Defining the neurocircuitry of exercise hyperpnoea.定义运动性过度通气的神经回路。
J Physiol. 2014 Feb 1;592(3):433-44. doi: 10.1113/jphysiol.2013.261586. Epub 2013 Aug 5.

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本文引用的文献

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Control of breathing during exercise.运动时的呼吸控制。
Compr Physiol. 2012 Jan;2(1):743-77. doi: 10.1002/cphy.c100045.
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