首页> 美国卫生研究院文献>The Journal of Neuroscience >Ambient GABA-Activated Tonic Inhibition Sharpens Auditory Coincidence Detection via a Depolarizing Shunting Mechanism
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Ambient GABA-Activated Tonic Inhibition Sharpens Auditory Coincidence Detection via a Depolarizing Shunting Mechanism

机译:通过去极化分流机制环境GABA激活的补品抑制作用可增强听觉重合检测。

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摘要

Tonic inhibition mediated by extrasynaptic GABAA receptors (GABAARs) has emerged as a novel form of neural inhibition in the CNS. However, little is known about its presence and function in the auditory system. Using whole-cell recordings in brain slices, we identified a tonic current mediated by GABAARs containing the δ subunit in middle/high-characteristic-frequency neurons of the chicken nucleus laminaris, the first interaural time difference encoder that computes information for sound localization. This tonic conductance was activated by ambient concentrations of GABA released from synaptic vesicles. Furthermore, pharmacological manipulations of the conductance demonstrated its essential role in coincidence detection. Remarkably, this depolarizing tonic conductance was strongly inhibitory primarily because of its shunting effect. These results demonstrate a novel role for tonic inhibition in central auditory information processing.
机译:由突触外GABAA受体(GABAARs)介导的强直抑制已作为中枢神经系统中一种新型的神经抑制形式出现。但是,关于它在听觉系统中的存在和功能知之甚少。使用脑切片中的全细胞记录,我们确定了由GABAARs介导的强音电流,其中GABAARs在鸡核椎板的中/高特征频率神经元中含有δ亚基,这是第一个为声音定位计算信息的耳间时差编码器。突触小泡释放的环境浓度的GABA激活了这种补品传导。此外,电导的药理操作证明了其在巧合检测中的重要作用。值得注意的是,这种去极化的强音电​​导主要由于其分流作用而被强烈抑制。这些结果证明了在中央听觉信息处理中抑制补品的新作用。

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