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在体外对大鼠视交叉上核神经元进行细胞内记录时的电特性。

The electrical properties of neurones of the rat suprachiasmatic nucleus recorded intracellularly in vitro.

作者信息

Wheal H V, Thomson A M

出版信息

Neuroscience. 1984 Sep;13(1):97-104. doi: 10.1016/0306-4522(84)90262-8.

Abstract

Stable intracellular recordings were obtained from 22 suprachiasmatic neurones in isolated brain slices. These cells were characterized by resting potentials of about -60 mV, high input resistances, relatively short time constants and action potentials of short duration. The action potentials were preceded by a slow depolarization and followed by a relatively brief afterhyperpolarization and long-lasting increase in membrane conductance. Current-voltage relations were usually linear between 0 and 80 mV negative to the resting potential. Postsynaptic potentials were evoked in these cells by electrical stimulation of the optic chiasm or contralateral suprachiasmatic nucleus. Both excitatory postsynaptic potentials, which evoked action potentials, and inhibitory postsynaptic potentials were recorded. Synaptic potentials were associated with an increase in membrane conductance. Action potentials evoked by synaptic activation were sometimes followed by up to three small, fast potentials. Small fast potentials were not seen to occur spontaneously, or to follow spontaneous, or current-evoked spikes, nor were they evoked by synaptic potentials that failed to evoke action potentials. The suprachiasmatic nucleus is essential for the generation of normal biological rhythms in mammals. The input it receives from the optic nerve is thought to be important in this role. It is hoped that these preliminary intracellular studies will form a basis for further work on the inherent properties of suprachiasmatic neurones and their responses to visual input.

摘要

从分离的脑片中的22个视交叉上核神经元获得了稳定的细胞内记录。这些细胞的特征是静息电位约为-60 mV,输入电阻高,时间常数相对较短,动作电位持续时间短。动作电位之前有一个缓慢的去极化,之后是一个相对短暂的超极化后电位和膜电导的持久增加。电流-电压关系在静息电位负向0至80 mV之间通常呈线性。通过对视交叉或对侧视交叉上核进行电刺激,在这些细胞中诱发突触后电位。记录到了诱发动作电位的兴奋性突触后电位和抑制性突触后电位。突触电位与膜电导的增加有关。突触激活诱发的动作电位有时会跟随多达三个小的快速电位。小的快速电位不会自发出现,也不会跟随自发或电流诱发的尖峰出现,也不会由未能诱发动作电位的突触电位诱发。视交叉上核对于哺乳动物正常生物节律的产生至关重要。人们认为它从视神经接收的输入在这一作用中很重要。希望这些初步的细胞内研究将为进一步研究视交叉上核神经元的固有特性及其对视觉输入的反应奠定基础。

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