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猫延髓尾部中缝核神经元对前庭神经刺激的反应。

Responses of neurons in the caudal medullary raphe nuclei of the cat to stimulation of the vestibular nerve.

作者信息

Yates B J, Goto T, Bolton P S

机构信息

Laboratory of Neurophysiology, Rockefeller University, New York, NY 10021.

出版信息

Exp Brain Res. 1992;89(2):323-32. doi: 10.1007/BF00228248.

Abstract

In the decerebrate cat, recordings were made from neurons in the caudal medullary raphe nuclei to determine if they responded to electrical stimulation of the vestibular nerve and thus might participate in vestibulosympathetic reflexes. Many of these cells projected to the upper thoracic spinal cord. The majority (20/28) of raphespinal neurons with conduction velocities between 1 and 4 m/s received vestibular inputs; 13 of the 20 were inhibited, and 7 were excited. Since many raphespinal neurons with similar slow conduction velocities are involved in the control of sympathetic outflow, as well as in other functions, these cells could potentially relay vestibular signals to sympathetic preganglionic neurons. The onset latency of the vestibular effects was long (median of 15 ms), indicating the inputs were polysynaptic. In addition, 34 of 42 raphespinal neurons with more rapid conduction velocities (6-78 m/s) also received long-latency (median of 10 ms) labyrinthine inputs; 26 were excited and 8 were inhibited. Although little is known about these rapidly-conducting cells, they do not appear to be involved in autonomic control, suggesting that the function of vestibular inputs to raphe neurons is not limited to production of vestibulosympathetic reflexes. One hypothesis is that raphe neurons are also involved in modulating the gain of vestibulocollic and vestibulospinal reflexes; this possibility remains to be tested.

摘要

在去大脑的猫中,对延髓尾部中缝核的神经元进行了记录,以确定它们是否对前庭神经的电刺激有反应,从而可能参与前庭交感反射。这些细胞中有许多投射到上胸段脊髓。传导速度在1至4米/秒之间的中缝脊髓神经元中,大多数(20/28)接受前庭输入;20个中有13个被抑制,7个被兴奋。由于许多具有相似慢传导速度的中缝脊髓神经元参与交感神经输出的控制以及其他功能,这些细胞可能将前庭信号传递给交感神经节前神经元。前庭效应的起始潜伏期较长(中位数为15毫秒),表明输入是多突触的。此外,42个传导速度较快(6 - 78米/秒)的中缝脊髓神经元中有34个也接受了潜伏期较长(中位数为10毫秒)的迷路输入;26个被兴奋,8个被抑制。尽管对这些快速传导的细胞了解甚少,但它们似乎不参与自主控制,这表明前庭对中缝神经元的输入功能不限于产生前庭交感反射。一种假设是中缝神经元也参与调节前庭颈反射和前庭脊髓反射的增益;这种可能性仍有待检验。

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