gaba能抑制形成频率调谐和修改反应性质在豹蛙的上橄榄核。

W Zheng, J C Hall
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引用次数: 14

摘要

采用离子离子诱导法研究了γ -氨基丁酸(GABA)受体拮抗剂甲氧二库兰在豹蛙上榄核74个神经元兴奋性频率调谐中的抑制作用。对于37个神经元,双丘线的应用拓宽和/或改变了兴奋性频率调谐曲线的结构。结果表明,gaba介导的抑制不仅使神经元的调谐曲线变尖,而且在上橄榄核中产生新的频率调谐特性中起着关键作用。双曲线碱的应用也影响了其他神经元的反应特性。59个神经元中有18个神经元的自发放电率增加了11-338%。58个神经元中有32个神经元刺激诱发放电率增加,速率水平功能改变。对60个神经元的放电模式没有定性影响,但有2个张力反应神经元的反应持续时间增加(> 30%)。gaba能抑制在单信号分析中的其他作用也进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GABAergic inhibition shapes frequency tuning and modifies response properties in the superior olivary nucleus of the leopard frog.

The role of gamma-aminobutyric acid (GABA)ergic inhibition in shaping the excitatory frequency tuning of 74 neurons in the superior olivary nucleus of the leopard frog, Rana pipiens, was studied using iontophoretic application of the GABA(A) receptor antagonist, bicuculline methiodide. For 37 neurons, bicuculline application broadened and/or changed the configuration of the excitatory frequency-tuning curve. Results indicate that GABA-mediated inhibition not only sharpens the tuning curves of neurons but also plays a critical role in creating new frequency tuning properties in the superior olivary nucleus. Bicuculline application affected other neuronal response properties as well. Spontaneous firing rate increased 11-338% for 18 of 59 neurons. For 32 of 58 neurons there was an increase in stimulus-evoked discharge rate and a change in rate-level function. There was no qualitative effect on the discharge pattern of 60 neurons, though 2 tonically responding neurons did show an increase (> 30%) in response duration. Additional roles for GABAergic inhibition in monaural signal analysis are discussed.

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