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孤束核中神经元的放电模式:膜超极化的调节作用

Firing pattern of neurons in the nucleus tractus solitarius: modulation by membrane hyperpolarization.

作者信息

Dekin M S, Getting P A

出版信息

Brain Res. 1984 Dec 17;324(1):180-4. doi: 10.1016/0006-8993(84)90640-1.

Abstract

Neurons in the ventral region of the nucleus tractus solitarius (NTS) of guinea pigs were studied using an in vitro brainstem slice preparation. One group of neurons was characterized electrophysiologically by a delay between the onset of a depolarizing stimulus and the first spike. This delay could be as large as 760 ms and was modulated by the membrane potential level preceding the stimulus. The firing rate during the depolarizing stimulus was also modulated by the preceding membrane potential level. A fast transient outward current, similar to A-current in molluscan neurons, appeared to be responsible for the delay in firing while a slower calcium-activated potassium current affected the firing rate. These data suggest that intrinsic membrane properties may play an important role in determining the firing pattern of NTS neurons. In vivo, inhibitory synaptic inputs could modulate the expression of these intrinsic properties during subsequent excitation.

摘要

利用体外脑干切片制备技术对豚鼠孤束核(NTS)腹侧区域的神经元进行了研究。一组神经元在电生理上的特征是去极化刺激开始与第一个动作电位之间存在延迟。这种延迟可达760毫秒,并受刺激前膜电位水平的调节。去极化刺激期间的放电频率也受先前膜电位水平的调节。一种快速的瞬时外向电流,类似于软体动物神经元中的A电流,似乎是导致放电延迟的原因,而一种较慢的钙激活钾电流则影响放电频率。这些数据表明,内在膜特性可能在决定NTS神经元的放电模式中起重要作用。在体内,抑制性突触输入可在随后的兴奋过程中调节这些内在特性的表达。

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