首页> 外文期刊>The Journal of the Acoustical Society of America >Phase delay measurements of distortion product otoacoustic emissions at 2f1–f2 and 2f2–f1 in human ears
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Phase delay measurements of distortion product otoacoustic emissions at 2f1–f2 and 2f2–f1 in human ears

机译:人耳在2f1-f2和2f2-f1处失真产物耳声发射的相位延迟测量

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摘要

The present study used distortion product otoacoustic emission (DPOAE) latency as a tool to provide information about the generation sites of 2f1–f2 and 2f2–f1 DPOAEs in humans. The DPOAE 2f1–f2 is supposed to be generated near the f2 site, but little is known about the 2f2–f1 DPOAE processing in humans. The present work sought to test several hypotheses as to the possible generation of 2f1–f2 at the f2 site and of 2f2–f1 at the 2f2–f1 site as well as their backward reflection site, by comparing latencies of the two DPOAEs, under appropriate frequency manipulation. The effect of stimulus level was also studied. The latency values were calculated as the phase-lag related to the frequency shift, using the ILO92 software. Amplitudes were lower and latencies shorter for 2f2–f1 than for 2f1–f2. As expected, 2f1–f2 and 2f2–f1 DPOAE latency decreased with increasing stimulus level and frequency. At 70 dB SPL, latencies of DPOAEs with primaries f1 and f2 or f*1 and f*2, chosen so as to obtain 2f*1–f*2=2f2–f1, were identical, whereas at 55 dB SPL the similarities were less obvious, suggesting two different generation processes. The present study suggests that the comparison of several DPOAE components may produce useful information about their processing within the cochlea.
机译:本研究使用失真产物耳声发射(DPOAE)潜伏时间作为提供有关人类2f1-f2和2f2-f1 DPOAEs产生部位的信息的工具。 DPOAE 2f1-f2应该在f2站点附近生成,但对2f2-f1 DPOAE在人类中的处理知之甚少。当前的工作试图通过比较两个DPOAE的延迟,在适当的情况下检验关于f2站点上的2f1-f2和2f2-f1站点上的2f2-f1以及它们的向后反射站点的几种假设。频率操纵。还研究了刺激水平的影响。使用ILO92软件,将等待时间值计算为与频移相关的相位滞后。与2f1-f2相比,2f2-f1的振幅更低,延迟更短。如预期的那样,随着刺激水平和频率的增加,2f1-f2和2f2-f1 DPOAE潜伏期减少。在70 dB SPL时,选择基数为f1和f2或f * 1和f * 2的DPOAE的延迟是相同的,而选择它们以获得2f * 1-f * 2 = 2f2-f1则相同,而在55 dB SPL时,相似度是不太明显,暗示了两种不同的生成过程。本研究表明,对几种DPOAE成分的比较可能会产生关于它们在耳蜗内的加工的有用信息。

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