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对侧声音刺激对蜗腹侧核神经元单位活动的影响。

Effects of contralateral sound stimulation on unit activity of ventral cochlear nucleus neurons.

作者信息

Shore S E, Sumner C J, Bledsoe S C, Lu J

机构信息

Kresge Hearing Research Institute, Department of Otolaryngology, University of Michigan, USA.

出版信息

Exp Brain Res. 2003 Dec;153(4):427-35. doi: 10.1007/s00221-003-1610-6. Epub 2003 Sep 5.

Abstract

The cochlear nucleus (CN) commissural connection represents the first opportunity for convergence of binaural information in the auditory brainstem. All major neuron types in the ventral CN (VCN) are innervated by a diverse population of cells in the contralateral VCN. This study examined the effect of contralateral sound stimulation on the spontaneous rates (SRs) of neurons in the VCN. Unit activity was recorded with silicon-substrate multichannel probes which allowed recordings from up to 16 sites simultaneously. On average, 30% of units showed short-latency (often only 2 ms greater than the latencies of ipsilateral sound-evoked responses) inhibition of SR by wideband contralateral noise bursts. Fewer units (4.5%) were excited by contralateral noise at sound levels low enough to exclude excitation by acoustic crossover. Both regular and irregular units in the anterior VCN (AVCN) and posterior VCN (PVCN) were inhibited by contralateral sound. Decrements in SR followed a monotonic function with increases in contralateral sound level, except where responses could be attributed to acoustic crossover. Restricting the contralateral noise bandwidth resulted in a frequency-specific inhibition, dominated by frequencies at and below the ipsilateral BF of the unit, consistent with anatomical findings of the tonotopic organization of the CN commissural pathway. The latencies of these effects are compatible with mono, di and tri-synaptic connections reflecting CN commissural pathway effects.

摘要

耳蜗核(CN)的连合连接是听觉脑干中双耳信息汇聚的首个机会。腹侧耳蜗核(VCN)中的所有主要神经元类型均受对侧VCN中多种细胞的支配。本研究考察了对侧声音刺激对VCN中神经元自发放电率(SRs)的影响。使用硅基多通道探针记录单位活动,该探针允许同时从多达16个位点进行记录。平均而言,30%的单位表现出对宽带对侧噪声猝发的SR短潜伏期抑制(通常仅比对侧声音诱发反应的潜伏期长2毫秒)。在足够低的声音水平下,较少的单位(4.5%)被对侧噪声兴奋,以排除声学交叉兴奋。前VCN(AVCN)和后VCN(PVCN)中的规则和不规则单位均被对侧声音抑制。除了反应可归因于声学交叉的情况外,SR的降低随对侧声音水平的增加呈单调函数。限制对侧噪声带宽导致频率特异性抑制,以单位同侧最佳频率及以下的频率为主,这与CN连合通路的音调组织的解剖学发现一致。这些效应的潜伏期与反映CN连合通路效应的单、双和三突触连接一致。

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