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低频听神经纤维对共振的时间编码:单纤维反应及群体模型

Temporal coding of resonances by low-frequency auditory nerve fibers: single-fiber responses and a population model.

作者信息

Carney L H, Yin T C

机构信息

Department of Neurophysiology, University of Wisconsin, Madison 53706.

出版信息

J Neurophysiol. 1988 Nov;60(5):1653-77. doi: 10.1152/jn.1988.60.5.1653.

Abstract
  1. We recorded responses of low-frequency auditory nerve fibers (characteristic frequency (CF) less than 3 kHz) in the cat to resonant stimuli with varied natural frequencies, damping coefficients, and sound pressure levels. Responses to resonances were synchronized to frequencies lying between the peak frequency of the stimulus spectrum and a frequency near the fiber's CF. The frequency of the dominant synchrony in the response varied systematically as a function of the stimulus parameters. 2. More lightly damped resonances, which have sharp spectral peaks, elicited synchrony closer to the peak frequency, whereas the broader peaks of more highly damped resonances elicited synchrony closer to the fiber's CF. Thus as the stimulus was varied from an undamped tone to a highly damped transient, the dominant component of the synchronized response moved from the peak frequency of the stimulus toward the CF of the fiber. The trajectory of the dominant component varied as a function of stimulus level, with higher levels resulting in synchrony biased toward the peak of the stimulus spectrum over a wider range of damping. 3. The frequency tuning and synchronization characteristics of a fiber, along with the stimulus parameters, determined the temporal properties of its response to complex stimuli. Using reverse correlation (revcor) filters to characterize the tuning and synchronization of auditory nerve fibers, we were able to predict the temporal properties of responses to resonant stimuli. 4. A parametric model was fit to measured revcor functions derived from responses of auditory nerve fibers to wideband noise. In this way, a bank of model revcor filters was developed based on our population of measured filters. 5. The filter bank was used to model the response of a population of auditory nerve fibers to resonances. Temporal patterns present in the response of a population of fibers encoded the parameters of resonant stimuli. 6. The model revcor filter bank provided a means of studying temporal response patterns of the population of fibers to other complex sounds. 7. The output of the population model is a representation of the temporal information provided by the auditory periphery to the central nervous system; thus it provides a potentially useful tool for testing hypotheses concerning the processing of temporal information by the central auditory system.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们记录了猫的低频听觉神经纤维(特征频率(CF)小于3kHz)对具有不同自然频率、阻尼系数和声压级的共振刺激的反应。对共振的反应与刺激频谱的峰值频率和接近纤维CF的频率之间的频率同步。反应中主导同步的频率随刺激参数系统地变化。2. 阻尼较小的共振具有尖锐的频谱峰值,能引发更接近峰值频率的同步,而阻尼较大的共振的更宽峰值则引发更接近纤维CF的同步。因此,当刺激从无阻尼音调变为高度阻尼瞬态时,同步反应的主导成分从刺激的峰值频率向纤维的CF移动。主导成分的轨迹随刺激水平而变化,更高的水平会导致在更宽的阻尼范围内同步偏向刺激频谱的峰值。3. 纤维的频率调谐和同步特性以及刺激参数决定了其对复杂刺激反应的时间特性。使用反向相关(revcor)滤波器来表征听觉神经纤维的调谐和同步,我们能够预测对共振刺激反应的时间特性。4. 一个参数模型被拟合到从听觉神经纤维对宽带噪声的反应中导出的测量revcor函数。通过这种方式,基于我们测量的滤波器群体开发了一组模型revcor滤波器。5. 滤波器组被用于模拟一群听觉神经纤维对共振的反应。一群纤维反应中呈现的时间模式编码了共振刺激的参数。6. 模型revcor滤波器组提供了一种研究纤维群体对其他复杂声音的时间反应模式的方法。7. 群体模型的输出是听觉外周向中枢神经系统提供的时间信息的一种表示;因此它为检验关于中枢听觉系统处理时间信息的假设提供了一个潜在有用的工具。(摘要截断于400字)

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