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噪声刺激的双耳时间延迟对猫下丘低频细胞的影响。III. 互相关的证据。

Effects of interaural time delays of noise stimuli on low-frequency cells in the cat's inferior colliculus. III. Evidence for cross-correlation.

作者信息

Yin T C, Chan J C, Carney L H

机构信息

Department of Neurophysiology, University of Wisconsin Medical School, Madison 53706.

出版信息

J Neurophysiol. 1987 Sep;58(3):562-83. doi: 10.1152/jn.1987.58.3.562.

Abstract
  1. We tested the coincidence, or cross-correlation, model of Jeffress, which proposes a neuronal mechanism for sensitivity to interaural time differences (ITDs) in low-frequency cells in the central nucleus of the inferior colliculus (ICC) of the cat. Different tokens of Gaussian noise stimuli were delivered to the two ears. We studied the neural responses to changes in ITDs of these stimuli and examined the manner in which the binaural cells responded to them. All of our results support the idea that the central binaural neurons perform an operation very similar to cross-correlation on the inputs arriving from each side. These inputs are transformed from the actual acoustic signal by the peripheral auditory system, and these transformations are reflected in the properties of the cross-correlations. 2. The responses to ITDs of identical broadband noise stimuli to the two ears varies cyclically as a function of ITD at a frequency close to the best frequency of the neuron. This cyclic response is a consequence of the narrowband filtering of the wideband acoustic signal by the auditory nerve fibers. To examine the effects of using stimuli to the two ears that were correlated to each other to different degrees, we generated pairs of noises. Each pair consisted of one standard noise, which was delivered to one ear, and a linear sum of two standard uncorrelated noises, which was delivered to the other ear. The responses of 34 neurons in the ICC to ITDs of noises with variable interaural coherence were examined. When partially correlated noises were delivered, there was a positive and approximately linear relationship between the degree of modulation of the response as a function of ITD and interaural coherence. The degree of modulation was measured by the synchronization coefficient, or vector strength, over one period of the ITD curve. 3. We examined the effects of altering the interaural phase relationships of the input noise stimuli. The phase of the noise stimuli was changed by digitally filtering the standard noise so that only a phase delay was imposed. The responses to ITDs with differing interaural phase relationships were then studied by delivering a phase-shifted noise to one ear and the standard noise to the other. The ITD curves in response to phase-shifted noise were shifted by about the same amount as the shift of the stimulus; the shift of the response was measured with respect to the case with identical noises to the two ears.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们测试了杰弗里斯的重合或互相关模型,该模型提出了一种关于猫下丘中央核(ICC)低频细胞对耳间时间差(ITD)敏感的神经元机制。将不同样本的高斯噪声刺激分别施加到双耳。我们研究了这些刺激的ITD变化时的神经反应,并考察了双耳细胞对其作出反应的方式。我们所有的结果都支持这样一种观点,即中枢双耳神经元对来自两侧的输入执行与互相关非常相似的运算。这些输入由外周听觉系统从实际声信号转换而来,并且这些转换反映在互相关的特性中。2. 双耳对相同宽带噪声刺激的ITD反应会随着ITD以接近神经元最佳频率的频率周期性变化。这种周期性反应是听神经纤维对宽带声信号进行窄带滤波的结果。为了研究使用彼此不同程度相关的双耳刺激的影响,我们生成了噪声对。每对由一个标准噪声(施加到一只耳朵)和两个标准不相关噪声的线性和(施加到另一只耳朵)组成。研究了ICC中34个神经元对具有可变耳间相干性的噪声的ITD反应。当施加部分相关噪声时,反应随ITD的调制程度与耳间相干性之间存在正的且近似线性的关系。调制程度通过ITD曲线一个周期内的同步系数或矢量强度来测量。3. 我们考察了改变输入噪声刺激的耳间相位关系的影响。通过对标准噪声进行数字滤波来改变噪声刺激的相位,以便仅施加相位延迟。然后通过向一只耳朵施加相移噪声而向另一只耳朵施加标准噪声,研究对具有不同耳间相位关系的ITD的反应。对相移噪声的ITD曲线的偏移量与刺激的偏移量大致相同;反应的偏移是相对于双耳接收相同噪声的情况来测量的。(摘要截断于400字)

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