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对来自前腹侧耳蜗核神经元反应的维纳核分析。

Wiener kernel analysis of responses from anteroventral cochlear nucleus neurons.

作者信息

Wickesberg R E, Dickson J W, Gibson M M, Geisler C D

出版信息

Hear Res. 1984 May;14(2):155-74. doi: 10.1016/0378-5955(84)90014-5.

Abstract

Responses to pseudo-random Gaussian white noise, tones and clics were recorded from neurons in the anteroventral cochlear nucleus (AVCN) of barbiturate anesthetized cats. The responses to white noise were used to calculate estimates of the zero-, first- and second-order Wiener kernels for these neurons. The Wiener kernels did contain useful information on the fundamental, DC and second harmonic components of the responses of AVCN neurons to tones, clicks and noise. However, they generally did not provide predictions of the difference tone distortion products found in the peripheral auditory system. Overall, the addition of the second kernel improved a prediction based on the zero- and first-order kernels, but not by very much. If the estimates of the Wiener kernels were not very good, then a second-order prediction could be worse than a first-order one. To produce good estimates of the Wiener kernels, many repetitions of very long Gaussian white noise stimuli are necessary. Therefore the technique does not permit rapid data collection. Further, exposure to long duration high intensity noise can result in acoustic trauma. This damage effects the mechanism that generates the difference tone distortion products, and it can also affect the tuning of the auditory neurons. Thus Wiener's nonlinear system identification theory has only limited usefulness in the analysis of the peripheral auditory system.

摘要

在巴比妥麻醉的猫的前腹侧耳蜗核(AVCN)中记录了神经元对伪随机高斯白噪声、纯音和点击声的反应。利用对白噪声的反应来计算这些神经元的零阶、一阶和二阶维纳核估计值。维纳核确实包含了关于AVCN神经元对纯音、点击声和噪声反应的基频、直流和二次谐波成分的有用信息。然而,它们通常不能预测在外周听觉系统中发现的差频失真产物。总体而言,添加二阶核改善了基于零阶和一阶核的预测,但改善程度不大。如果维纳核的估计不是很好,那么二阶预测可能比一阶预测更差。为了得到维纳核的良好估计,需要对非常长的高斯白噪声刺激进行多次重复。因此,该技术不允许快速收集数据。此外,长时间暴露于高强度噪声会导致声学创伤。这种损伤会影响产生差频失真产物的机制,也会影响听觉神经元的调谐。因此,维纳的非线性系统识别理论在外周听觉系统分析中的作用有限。

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