Tuning curves and masking functions of auditory-nerve fibers in cat.

Sensory processes Pub Date : 1978-06-01
J W Bauer
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Abstract

Single units of the auditory nerve are maximally sensitive to a given frequency, the so-called characteristic frequency (CF). Tuning curves (functions relating the "threshold" for such units to the frequency of a sinusoidal stimulus) have inspired psychophysical measurements of masked thresholds in humans. At low levels, the results bear a striking resemblance to neural tuning curves, suggesting that a small, homogeneous group of units determine the so-called psychophysical tuning curves. This paper describes physiological measurements modeled after the psychophysical forward-masking paradigm. A masking tone was used to reduce the response in auditory-nerve fibers elicited by a probe tone that followed the masker. The level of the masking tone was varied to maintain a criterion level of responding to the probe. Plotting level of the masker as a function of its frequency yields a fiber-masking function. For low probe-tone levels, fiber-masking functions of low CF fibers and the tips of functions from high CF fibers were similar in shape to tuning curves obtained with single tone bursts. The fiber-masking function depends upon the response criterion and upon the level, duration, and frequency of the probe. Varying the level of the probe can also alter the shape of the fiber-masking function. These results have implications for interpreting psychophysical masking functions.

猫听觉神经纤维的调谐曲线和掩蔽功能。
听觉神经的单个单元对给定的频率最敏感,即所谓的特征频率(CF)。调谐曲线(将这些单位的“阈值”与正弦刺激的频率联系起来的函数)启发了人类隐藏阈值的心理物理测量。在低水平上,结果与神经调节曲线有着惊人的相似之处,表明一个小而均匀的单元组决定了所谓的心理物理调节曲线。本文描述了以心理物理前向掩蔽范式为模型的生理测量。掩蔽音被用来减少由掩蔽音后的探测音引起的听觉神经纤维的反应。掩蔽音的水平是不同的,以保持响应探针的标准水平。将掩蔽器的电平绘制为其频率的函数,得到光纤掩蔽函数。在低探测音水平下,低CF纤维的光纤屏蔽函数和高CF纤维的光纤屏蔽函数的尖端在形状上与单音爆发获得的调谐曲线相似。光纤屏蔽功能取决于响应标准和探头的电平、持续时间和频率。改变探头的电平也可以改变光纤屏蔽功能的形状。这些结果对解释心理物理掩蔽功能具有启示意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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