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耳蜗背侧核神经元的配对音促进作用:一种可在体内进行测试的短期增强模型。

Paired tone facilitation in dorsal cochlear nucleus neurons: a short-term potentiation model testable in vivo.

作者信息

Palombi P S, Backoff P M, Caspary D M

机构信息

Department of Pharmacology, Southern Illinois University School of Medicine, Springfield 62702.

出版信息

Hear Res. 1994 May;75(1-2):175-83. doi: 10.1016/0378-5955(94)90068-x.

Abstract

It has been suggested that the dorsal cochlear nucleus (DCN) is involved in coding stimulus history or prior auditory activity [Manis (1989) J. Neurophys., 61, 149-161; Manis (1990) J. Neurosci., 10, 2338-2351]. The major output neurons of the DCN are the fusiform (pyramidal) cells which are thought to receive excitatory inputs from the descending branch of the acoustic nerve onto their basal dendrites and significant inhibitory glycinergic and GABAergic inputs to the soma and dendrites. The apical dendrites of these neurons lie within the molecular layer of the DCN and encounter parallel fibers which are thought to utilize the excitatory amino acid neurotransmitter glutamate. In this study of anesthetized chinchillas, we found that, in contrast to the responses of acoustic nerve fibers and most cochlear nucleus neurons which are masked by an appropriate preceding signal, many DCN principal cells are facilitated during the second of two identical stimuli. Facilitated DCN responses often have a reduced interspike interval and a more chopper-like temporal response pattern to the second characteristic frequency tone. This paired tone facilitation in the chinchilla DCN provides as in vivo model of short-term potentiation elicited by sensory stimulation similar to the paired-pulse facilitation observed with electrical stimulation in other models.

摘要

有人提出,背侧耳蜗核(DCN)参与编码刺激历史或先前的听觉活动[马尼斯(1989年)《神经生理学杂志》,61卷,第149 - 161页;马尼斯(1990年)《神经科学杂志》,10卷,第2338 - 2351页]。DCN的主要输出神经元是梭形(锥体)细胞,据认为这些细胞在其基底树突上接受来自听神经下行支的兴奋性输入,并在其胞体和树突上接受显著的抑制性甘氨酸能和GABA能输入。这些神经元的顶端树突位于DCN的分子层内,并与平行纤维相遇,据认为这些平行纤维利用兴奋性氨基酸神经递质谷氨酸。在这项对麻醉的毛丝鼠的研究中,我们发现,与听神经纤维和大多数耳蜗核神经元的反应不同,它们的反应会被适当的先前信号掩盖,许多DCN主细胞在两个相同刺激中的第二个刺激期间会得到易化。易化的DCN反应通常具有缩短的峰间期,并且对第二个特征频率音调具有更类似斩波的时间反应模式。毛丝鼠DCN中的这种配对音调易化提供了一种体内模型,用于研究由感觉刺激引发的短期增强,类似于在其他模型中用电刺激观察到的配对脉冲易化。

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