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Low frequency and high-frequency cochlear nonlinearity in humans

机译:人类的低频和高频耳蜗非线性

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摘要

Low- and high-frequency cochlear nonlinearity was studied by measuring DPOAE I/O functions at 0.5 and 4 kHz in 103 normal-hearing subjects. Behavioral thresholds at both f2's were used to set L2 in dB SL for each subject. Primary levels were optimized by determining the L1 resulting in the largest Ldp for each L2 for each subject and both f2's. DPOAE I/O functions were measured using L2 inputs from −10 dB SL (0.5 kHz) or −20 dB SL (4 kHz) to 65 dB SL (both frequencies). Mean DPOAE I/O functions, averaged across subjects, differed between the two frequencies, even when threshold was taken into account. The slopes of the I/O functions were similar at 0.5 and 4 kHz for high-level inputs, with maximum compression ratios of about 4:1. At both frequencies, the maximum slope near DPOAE threshold was approximately 1, which occurred at lower levels at 4 kHz, compared to 0.5 kHz. These results suggest that there is a wider dynamic range and perhaps greater cochlear-amplifier gain at 4 kHz, compared to 0.5 kHz. Caution is indicated, however, because of uncertainties in the interpretation of slope and because the confounding influence of differences in noise level could not be completely controlled.
机译:通过在103位听力正常的受试者中测量0.5和4 kHz的DPOAE I / O功能,研究了低频和高频耳蜗非线性。在两个f2的行为阈值用于将每个受试者的L2设置为dB SL。通过确定导致每个受试者和两个f2的每个L2的最大Ldp的L1,优化初级水平。 DPOAE I / O功能是使用L2输入从-10 dB SL(0.5 kHz)或-20 dB SL(4 kHz)到65 dB SL(两个频率)进行测量的。即使在考虑阈值的情况下,两个对象之间平均DPOAE I / O功能在两个对象之间的平均值也有所不同。对于高电平输入,I / O功能的斜率在0.5和4 kHz时相似,最大压缩比约为4:1。在两个频率下,接近DPOAE阈值的最大斜率约为1,与0.5 kHz相比,它在4 kHz的较低水平上出现。这些结果表明,与0.5 kHz相比,在4 kHz处具有更宽的动态范围和更大的耳蜗放大器增益。但是,由于斜率的解释存在不确定性,并且由于不能完全控制噪声水平差异的混杂影响,因此需要谨慎。

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