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Cochlear nonlinearity in normal-hearing subjects as inferred psychophysically and from distortion-product otoacoustic emissions

机译:从心理上和失真产物耳声发射推断正常听力受试者的耳蜗非线性

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The aim was to investigate the correlation between compression exponent, compression threshold, and cochlear gain for normal-hearing subjects as inferred from temporal masking curves (TMCs) and distortion-product otoacoustic emission (DPOAEs) input-output (I/O) curves. Care was given to reduce the influence of DPOAE fine structure on the DPOAE I/O curves. A high correlation between compression exponent estimates obtained with the two methods was found at 4 kHz but not at 0.5 and 1 kHz. One reason is that the DPOAE I/O curves show plateaus or notches that result in unexpectedly high compression estimates. Moderately high correlation was found between compression threshold estimates obtained with the two methods, although DPOAE-based values were around 7 dB lower than those based on TMCs. Both methods show that compression exponent and threshold are approximately constant across the frequency range from 0.5 to 4 kHz. Cochlear gain as estimated from TMCs was found to be similar to 16 dB greater at 4 than at 0.5 kHz. In conclusion, DPOAEs and TMCs may be used interchangeably to infer precise individual nonlinear cochlear characteristics at 4 kHz, but it remains unclear that the same applies to lower frequencies. (c) 2008 Acoustical Society of America.
机译:目的是研究根据时间掩蔽曲线(TMC)和失真产物耳声发射(DPOAE)输入输出(I / O)曲线推断的正常听力受试者的压缩指数,压缩阈值和耳蜗增益之间的相关性。注意减少DPOAE精细结构对DPOAE I / O曲线的影响。两种方法获得的压缩指数估计值之间的高度相关性在4 kHz处发现,而在0.5和1 kHz处却没有​​。原因之一是DPOAE I / O曲线显示平稳或刻痕,从而导致意外的高压缩估计。尽管基于DPOAE的值比基于TMC的压缩阈值低约7 dB,但在这两种方法获得的压缩阈值估计之间发现了中等程度的相关性。两种方法都表明,压缩指数和阈值在0.5至4 kHz的整个频率范围内近似恒定。根据TMC估计,耳蜗增益在4时比在0.5 kHz时大大约16 dB。总之,DPOAE和TMC可以互换使用,以推断4 kHz时精确的个体非线性耳蜗特性,但仍不清楚是否适用于低频。 (c)2008年美国声学学会。

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