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对盲鳗成对神经节细胞的电相互作用研究。

Electrical Interaction of Paired Ganglion Cells in the Leech.

机构信息

Biological Laboratories, Harvard University, Cambridge, and the Department of Zoology, Syracuse University.

出版信息

J Gen Physiol. 1963 Jan 1;46(3):573-87. doi: 10.1085/jgp.46.3.573.

Abstract

The two paired giant ganglion cells (PGC's) found in each ganglion of the leech central nervous system fire synchronously in response to certain sensory input. Polarizing current passed into either of these cells is seen to displace the membrane potentials of both cells, the voltage attenuation between the two somata ranging from 2 to 5 times. This attenuation factor remains unchanged when the direction of the polarizing current is reversed, and remains about the same when the other cell of the pair is directly polarized. When one of the PGC's is partially depolarized with outward current, a repetitive train of impulses is generated. Each spike is followed by a spike in the other cell. Occasionally, a small subspike potential is seen in place of a follower spike. This potential appears to differ in shape and time course from synaptic potentials elicited by afferent input to these cells, and appears rather to be an electrotonic potential derived from the prejunctional impulse in the stimulated PGC. It is proposed that transmission between these cells is electrical, being accomplished by a flow of local circuit current across a non-rectifying junction or connection to the spike-initiating region of the other PGC.

摘要

在环节动物中枢神经系统的每个神经节中都可以发现两个配对的巨大神经节细胞(PGC),它们会对特定的感觉输入同步放电。向这两个细胞中的任何一个传递极化电流,都会导致两个细胞的膜电位发生位移,两个胞体之间的电压衰减范围为 2 到 5 倍。当极化电流的方向反转时,这个衰减因子保持不变,而当对配对细胞中的另一个细胞进行直接极化时,衰减因子也保持大致相同。当一个 PGC 被外向电流部分去极化时,会产生一连串重复的冲动。每个尖峰之后都会在另一个细胞中产生一个尖峰。偶尔,会在跟随尖峰的位置看到一个小的亚尖峰电位。这个电位的形状和时间进程与传入这些细胞的传入输入引起的突触电位不同,而更像是由刺激的 PGC 中的节前冲动产生的电紧张电位。因此,可以提出这些细胞之间的传递是电的,通过局部电路电流在非整流连接或连接到另一个 PGC 的尖峰起始区流动来实现。

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