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首页> 外文期刊>Journal of Neurophysiology >GABAergic inhibition influences auditory motion-direction sensitivity in barn owls.
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GABAergic inhibition influences auditory motion-direction sensitivity in barn owls.

机译:GABA能抑制作用会影响仓的听觉运动方向敏感性。

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Many neurons in the barn owl's inferior colliculus (IC) exhibit auditory motion-direction sensitivity (MDS), i.e., they respond more to motion of a sound source in one direction than to motion in the opposite direction. We investigated the cellular mechanisms underlying the phenomenon of auditory MDS by microiontophoretically applying gamma-aminobutyric acid (GABA) or the GABA-antagonist bicuculline methiodide (BMI) while recording from neurons in the owl's midbrain. In most cases GABA reduced the overall firing rate, whereas BMI increased it. In addition, 29% of the motion-direction-sensitive cells completely lost their selectivity for the direction of auditory movement during administration of BMI. It had been proposed that auditory MDS in the owl is due to inhibition. The present results show that GABAergic inhibition plays a role in the strengthening of MDS. We discuss the data within the framework of the acoustic motion detector and with respect to microiontophoretic studies on visual motion detection and on inhibitory mechanisms in the inferior colliculus.
机译:仓owl下丘(IC)中的许多神经元都表现出听觉运动方向敏感性(MDS),即,它们对声源在一个方向上的运动比对相反方向上的运动的反应更大。我们通过从猫头鹰的中脑神经元记录时,通过微离子电泳应用γ-氨基丁酸(GABA)或GABA拮抗剂双小分子甲硫醚(BMI),研究了听觉MDS现象背后的细胞机制。在大多数情况下,GABA降低了总体射击率,而BMI则提高了总体射击率。此外,在服用BMI期间29%的运动方向敏感细胞完全丧失了对听觉运动方向的选择性。已经提出,猫头鹰中的听觉MDS是由于抑制引起的。目前的结果表明,GABA能抑制在增强MDS中起作用。我们讨论了在声运动检测器的框架内的数据以及关于视觉运动检测和下丘的抑制机制的微离子电渗疗法研究。

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