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鸟类迷走神经背运动核的场电位和单单位分析以及鉴定迷走神经心脏起源细胞的标准。

Field potential and single unit analyses of the avian dorsal motor nucleus of the vagus and citeria for identifying vagal cardiac cells of origin.

作者信息

Schwaber J S, Cohen D H

出版信息

Brain Res. 1978 May 19;147(1):79-90. doi: 10.1016/0006-8993(78)90773-4.

Abstract

Field potentials evoked by mid-cervical vagal stimulation were systematically mapped in the dorsal motor and solitary nuclei of the pigeon. Since responses varied predictably with microelectrode position, they could be used for localization in the dorsal medulla. By varying stimulus intensity and monitoring the vagal compound action potential, contributions of the different compound action potential waves were then established. Activation of the Bl-wave, which includes cardioinhibitory fiber activity, has its most prominent effect in the intermediate rostrocaudal zone of the dorsal motor nucleus in the region of subnuxleus b. This is where the cells of origin of the vagal cardiac fibers have previously been anatomically localized. Single unit experiments then established that (a) vagal motoneurons with axonal conduction velocities in the cardioinhibitory fiber range (8.0-14.5 m/sec) are primarily localized to the intermediate rostrocaudal zone of the dorsal motor nucleus in the region of subnucleus b, and (b) motoneurons in this zone that conduct at 8.0-14.5 m/sec distribute their axons in the cardiac branches. Furthermore, no error is introduced by identifying such neurons with mid-cervical rather than midthoracic vagal stimulation. Thus, the following criteria establish a neuron as giving rise to a vagal cardioinhibitory fiber: (a) localizing it to the intermediate rostrocaudal zone of the dorsal motor nucleus on the basis of the field potential evoked by mid-cervical vagal stimulation; (b) antidromically activating it with mid-cervical vagal stimulation; and (c) demonstrating that its axon conducts at 8.8-14.5 m/sec.

摘要

在鸽子的背运动核和孤束核中,系统地绘制了颈中部迷走神经刺激诱发的场电位。由于反应随微电极位置可预测地变化,因此可用于延髓背侧的定位。通过改变刺激强度并监测迷走复合动作电位,进而确定了不同复合动作电位波的贡献。激活包括心抑制纤维活动的B1波,在背运动核中间的头尾区域、b亚核区域具有最显著的作用。这是迷走心脏纤维的起源细胞先前在解剖学上定位的地方。单单位实验随后确定:(a)轴突传导速度在心抑制纤维范围内(8.0 - 14.5米/秒)的迷走运动神经元主要位于背运动核中间的头尾区域、b亚核区域;(b)该区域中传导速度为8.0 - 14.5米/秒的运动神经元将其轴突分布在心脏分支中。此外,用颈中部而非胸中部迷走神经刺激识别此类神经元不会引入误差。因此,以下标准可确定一个神经元产生迷走心抑制纤维:(a)根据颈中部迷走神经刺激诱发的场电位将其定位在背运动核中间的头尾区域;(b)用颈中部迷走神经刺激逆向激活它;(c)证明其轴突传导速度为8.8 - 14.5米/秒。

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