利用三角波微电极振荡在下丘脑内侧视前区记录大鼠神经元的细胞内活动。

T Watanabe
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引用次数: 0

摘要

采用三角波微电极振荡仪对大鼠下丘脑内侧视前区(POA)神经元活动进行细胞内记录。在该装置中,电极通过频率为1.0 ~ 1.8 kHz、电压为2.2 ~ 3.2 V的电流,并产生电极尖端的微振荡。在体内将电极插入大鼠POA神经元。在体内记录大鼠POA神经元的活动是可能的。通过对下丘脑弓形正中隆起的电刺激,也可以在细胞内记录反形、正形或无反应的神经元。结果观察到动作电位的静息电位、阈值电位和尖峰电位等各组成部分,以及超极化后和去极化后的去极化和复极化。静息电位范围为45 ~ 90 mV, POA神经元的动作电位大小基本相同。然而,仍有几个问题有待解决。一般来说,细胞内记录的可用时间太短。细胞最长只能存活15分钟,几分钟内就可能死亡。设备的改进是必须的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intracellular recording of rat neuron activity at the medial preoptic area of the hypothalamus using triangular wave microelectrode oscillation.

A triangular wave microelectrode oscillating apparatus was constructed to evaluate an intracellular recording of rat neuron activity in the medial preoptic area (POA) of the hypothalamus. In this apparatus, electrodes passed a current with a frequency of 1.0 to 1.8 kHz and a voltage of 2.2 to 3.2 V and produced micro-oscillation of the electrode tip. The electrode was inserted into a neuron of the rat POA in vivo. In vivo recording of the activity of the rat POA neuron was possible. By means of electrical stimulation of the median eminence arcuate of the hypothalamus, an intracellular recording of antidromic, orthodromic or non-responding neuron was also possible. As a result, various components of the action potential such as the resting, threshold and spike potentials, and depolarization and repolarization such as after-hyperpolarization and after-depolarization were observed. The resting potentials ranged from 45 to 90 mV, and POA neurons possessed action potentials of almost the same magnitude. Several problems, however, remain to be solved. In general, the time available for the intracellular recordings is too short. The cells survive only for 15 minutes at the longest and may die in only a few minutes. An improvement of the apparatus was mandatory.

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