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在髭蝠的下丘中,方位感受野由γ-氨基丁酸能抑制作用塑造而成。

Azimuthal receptive fields are shaped by GABAergic inhibition in the inferior colliculus of the mustache bat.

作者信息

Park T J, Pollak G D

机构信息

Department of Zoology, University of Texas at Austin 78712.

出版信息

J Neurophysiol. 1994 Sep;72(3):1080-102. doi: 10.1152/jn.1994.72.3.1080.

Abstract
  1. In this study we examine the effects of GABAergic inhibition on the response properties and the constructed azimuthal receptive fields of 54 excitatory/inhibitory (EI) neurons tuned to 60 kHz in the inferior colliculus of the mustache bat. The constructed azimuthal receptive fields predict the spike counts that would be evoked by different intensities of 60-kHz sounds presented from each of 13 azimuthal locations in the frontal sound field. 2. Action potentials were recorded with a micropipette attached to a multibarrel glass electrode. Bicuculline, an antagonist specific for gamma-aminobutyric acid-A (GABAA) receptors, was iontophoretically applied through the multibarrel electrode. Both monaural and binaural response properties were initially recorded at a variety of interaural intensity disparities (IIDs) and absolute intensities, and the same response properties were subsequently assessed while GABAergic inhibition was blocked by bicuculline. Azimuthal receptive fields both before and during the application of bicuculline were constructed from response properties obtained with earphones after correcting for the directional properties of the ear and the IIDs generated by 60-kHz sounds presented from a variety of azimuthal locations. 3. Bicuculline had virtually no effect on either the monaural or binaural properties of 19 cells (35%). The constructed azimuthal receptive fields of these cells were also unaffected by bicuculline. Presumably the properties of these cells were formed in a lower nucleus, most likely the contralateral lateral superior olive (LSO), and were imposed on the collicular cell via the crossed projection from the LSO to the inferior colliculus, which is known to be excitatory. 4. In more than half of the neurons (65%) GABAergic inhibition influenced one or more features of the cell's response properties and thus its azimuthal receptive field. Some response properties were formed in the colliculus through GABAergic inhibition, whereas others appear to have been shaped initially in a lower nucleus and then further modified by GABAergic inhibition in the inferior colliculus. Moreover, a number of features of GABAergic inhibition that acted on inferior collicular cells were evoked by stimulation of the contralateral (excitatory) ear, whereas other features were influenced by stimulation of the ipsilateral (inhibitory) ear. 5. In 20 cells (37%) blocking GABAergic inhibition reduced or abolished the inhibition evoked by the ipsilateral ear. The receptive fields of cells in which the ipsilaterally evoked inhibition was reduced by bicuculline expanded further into the ipsilateral sound field than they did before bicuculline.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在本研究中,我们考察了γ-氨基丁酸(GABA)能抑制对54个在髯蝠下丘中被调谐到60千赫兹的兴奋性/抑制性(EI)神经元的反应特性以及构建的方位感受野的影响。构建的方位感受野预测了由 frontal声场中13个方位位置中的每一个位置呈现的不同强度的60千赫兹声音所诱发的尖峰计数。2. 用连接到多管玻璃电极的微吸管记录动作电位。荷包牡丹碱是一种对γ-氨基丁酸A(GABAA)受体具有特异性的拮抗剂,通过多管电极进行离子电泳施加。单耳和双耳反应特性最初是在各种耳间强度差异(IID)和绝对强度下记录的,随后在荷包牡丹碱阻断GABA能抑制时评估相同的反应特性。在施加荷包牡丹碱之前和期间的方位感受野是根据用耳机获得的反应特性构建的,这些反应特性在校正了耳朵的方向特性以及由各种方位位置呈现的60千赫兹声音产生的IID之后得到。3. 在19个细胞(35%)中,荷包牡丹碱对单耳或双耳特性几乎没有影响。这些细胞构建的方位感受野也不受荷包牡丹碱的影响。据推测,这些细胞的特性是在较低的核中形成的,最有可能是对侧外侧上橄榄核(LSO),并通过从LSO到下丘的交叉投射施加到下丘细胞上,已知该投射是兴奋性的。4. 在超过一半的神经元(65%)中,GABA能抑制影响了细胞反应特性的一个或多个特征,从而影响了其方位感受野。一些反应特性是通过GABA能抑制在下丘中形成的,而其他特性似乎最初是在较低的核中形成,然后在下丘中通过GABA能抑制进一步修饰。此外,作用于下丘细胞的GABA能抑制的许多特征是由对侧(兴奋性)耳的刺激诱发的,而其他特征则受同侧(抑制性)耳的刺激影响。5. 在20个细胞(37%)中,阻断GABA能抑制减少或消除了同侧耳诱发的抑制。其同侧诱发的抑制被荷包牡丹碱降低的细胞的感受野在荷包牡丹碱处理后比处理前进一步扩展到同侧声场中。(摘要截断于400字)

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