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延髓吸气后期神经元放电的时间:迷走神经传入效应表明可能存在关闭开关功能。

Timing of medullary late-inspiratory neuron discharges: vagal afferent effects indicate possible off-switch function.

作者信息

Cohen M I, Huang W X, Barnhardt R, See W R

机构信息

Department of Physiology, Albert Einstein College of Medicine, Bronx, New York 10461.

出版信息

J Neurophysiol. 1993 May;69(5):1784-7. doi: 10.1152/jn.1993.69.5.1784.

Abstract
  1. In decerebrate paralyzed cats, we observed the responses of ventral and dorsal medullary inspiratory (I) neurons to two types of vagal afferent input that shorten neural I: lung inflation and vagal electrical stimulation. 2. A study population of 15 I neurons whose firing patterns suggested involvement in the inspiratory OFF-switch (IOS) was selected on the basis of two criteria: late onset of firing and excitation by vagal inputs. 3. Firing in relation to the end of I showed two types of response to vagal inputs. The pre-expiratory onset time (time from initial spike to end of I) was either unchanged (type 1 response in 5/15 neurons) or significantly changed (type 2 response in 10/15 neurons). 4. It is suggested that type 1 neurons, whose firing patterns remain closely locked to the end of I despite considerable changes of I duration, are involved in promoting the IOS, whereas type 2 neurons are either not involved (e.g., late-onset premotor neurons) or are involved at an earlier temporal processing stage.
摘要
  1. 在去大脑麻痹的猫中,我们观察了延髓腹侧和背侧吸气(I)神经元对两种缩短神经吸气的迷走传入输入的反应:肺充气和迷走神经电刺激。2. 根据两个标准选择了15个I神经元的研究群体,其放电模式表明参与吸气切断开关(IOS):放电开始较晚且受迷走神经输入兴奋。3. 与吸气结束相关的放电对迷走神经输入表现出两种类型的反应。呼气前起始时间(从初始尖峰到吸气结束的时间)要么不变(15个神经元中有5个为1型反应),要么显著改变(15个神经元中有10个为2型反应)。4. 有人提出,1型神经元的放电模式尽管吸气持续时间有相当大的变化,但仍与吸气结束紧密锁定,参与促进IOS,而2型神经元要么不参与(例如,晚期起始的运动前神经元),要么在更早的时间处理阶段参与。

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