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Analysis of the cochlear microphonic to a low-frequency tone embedded in filtered noise

机译:将耳蜗微音分析为滤波噪声中嵌入的低频音

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摘要

The cochlear microphonic was recorded in response to a 733 Hz tone embedded in noise that was high-pass filtered at 25 different frequencies. The amplitude of the cochlear microphonic increased as the high-pass cutoff frequency of the noise increased. The amplitude growth for a 60 dB SPL tone was steeper and saturated sooner than that of an 80 dB SPL tone. The growth for both signal levels, however, was not entirely cumulative with plateaus occurring at about 4 and 7 mm from the apex. A phenomenological model of the electrical potential in the cochlea that included a hair cell probability function and spiral geometry of the cochlea could account for both the slope of the growth functions and the plateau regions. This suggests that with high-pass-filtered noise, the cochlear microphonic recorded at the round window comes from the electric field generated at the source directed towards the electrode and not down the longitudinal axis of the cochlea.
机译:录制了耳蜗微音以响应嵌入噪声中的733 Hz音调,该音调在25个不同的频率上被高通滤波。耳蜗微音的振幅随着噪声的高通截止频率的增加而增加。 60 dB SPL音调的幅度增长比80 dB SPL音调的幅度增长更快,更饱和。然而,两种信号水平的增长并没有完全累积,高原出现在距顶点约4和7mm处。耳蜗中的电位的现象学模型包括毛细胞概率函数和耳蜗的螺旋几何形状,可以解释生长函数的斜率和高原区域。这表明,对于高通滤除的噪声,在圆窗处记录的耳蜗微音来自于在指向电极而不是沿着耳蜗纵轴的源处产生的电场。

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