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Response Properties of Neighboring Neurons in the Auditory Midbrain for Pure-Tone Stimulation: A Tetrode Study

机译:听觉中脑邻近神经元对纯音刺激的反应特性:四极体研究

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摘要

The complex anatomical structure of the central nucleus of the inferior colliculus (ICC), the principal auditory nucleus in the midbrain, may provide the basis for functional organization of auditory information. To investigate this organization, we used tetrodes to record from neighboring neurons in the ICC of anesthetized cats and studied the similarity and difference among the responses of these neurons to pure-tone stimuli using widely used physiological characterizations. Consistent with the tonotopic arrangement of neurons in the ICC and reports of a threshold map, we found a high degree of correlation in the best frequencies (BFs) of neighboring neurons, which were mostly <3 kHz in our sample, and the pure-tone thresholds among neighboring neurons. However, width of frequency tuning, shapes of the frequency response areas, and temporal discharge patterns showed little or no correlation among neighboring neurons. Because the BF and threshold are measured at levels near the threshold and the characteristic frequency (CF), neighboring neurons may receive similar primary inputs tuned to their CF; however, at higher levels, additional inputs from other frequency channels may be recruited, introducing greater variability in the responses. There was also no correlation among neighboring neurons' sensitivity to interaural time differences (ITD) measured with binaural beats. However, the characteristic phases (CPs) of neighboring neurons revealed a significant correlation. Because the CP is related to the neural mechanisms generating the ITD sensitivity, this result is consistent with segregation of inputs to the ICC from the lateral and medial superior olives.
机译:下脑中央核(ICC)的复杂解剖结构,即中脑的主要听觉核,可以为听觉信息的功能组织提供基础。为了研究这种组织,我们使用四极体从麻醉猫的ICC中记录邻近神经元,并使用广泛使用的生理学特征研究了这些神经元对纯音刺激的反应之间的相似性和差异。与ICC中神经元的拓扑排列和阈值图的报告一致,我们发现相邻神经元的最佳频率(BFs)(在我们的样本中大多<3 kHz)与纯音具有高度相关性相邻神经元之间的阈值。然而,频率调谐的宽度,频率响应区域的形状和时间放电模式显示相邻神经元之间几乎没有相关性。因为BF和阈值是在接近阈值和特征频率(CF)的水平上测量的,所以相邻的神经元可能会收到调到其CF的相似的主要输入。但是,在更高级别上,可能会从其他频道招募更多输入,从而在响应中引入更大的可变性。在双耳节拍测量的相邻神经元对耳间时间差(ITD)的敏感性之间也没有相关性。但是,相邻神经元的特征相(CPs)显示出显着的相关性。因为CP与产生ITD敏感性的神经机制有关,所以该结果与从外侧和内侧上层橄榄向ICC的输入分离是一致的。

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