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首页> 外文期刊>The Journal of the Acoustical Society of America >Locus of generation for the 2f_1 - f_2 vs 2f_2 - f_1 distortion-product otoacoustic emissions in normal-hearing humans revealed by suppression tuning, onset latencies, and amplitude correlations
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Locus of generation for the 2f_1 - f_2 vs 2f_2 - f_1 distortion-product otoacoustic emissions in normal-hearing humans revealed by suppression tuning, onset latencies, and amplitude correlations

机译:通过抑制调谐,起始潜伏期和振幅相关性揭示正常听力人群2f_1-f_2与2f_2-f_1畸变产物耳声发射的产生轨迹

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摘要

The present study used distortion-product otoacoustic emission (DPOAE) suppression tuning curves (STCs), DPOAE onset latencies (OLs), and DPOAE amplitude correlations to investigate the locus of generation of the 2f_1 - f_2 DPOAE versus the 2f_2 - f_1 DPOAE in humans. The results of the tuning study revealed that, for the 2f_1 - f_2 DPOAE, the tips of the STCs tuned consistently below the geometric-mean (GM) frequency of the primary tones. In contrast, for the 2f_2 - f_1 DPOAE, STCs tuned above the GM of the primaries, with 50% of the tip frequencies at, or above, the 2f_2 - f_1 frequency place. When the average ratio of the 2f_2 - f_1 to the 2f_1 - f_2 tip frequencies was computed, a factor of 1.44 provided an estimate of the frequency shift needed to align the two DPOAE generation sites. Other results showed that OLs for the 2f_2 - f_1 DPOAE were uniformly shorter than those for the 2f_1 - f_2, with difference at the low frequencies amounting to as much as 6-7 ms. Further, for both DPOAEs, curves describing latency decreases as a function of increasing GM frequencies were best fit by power functions. Shifting the GM frequency producing the 2f_2 - f_1 DPOAE by a factor of 1.6 caused the latency distributions for both DPOAEs to overlap thus resulting in a single function that described cochlear delay as a function of GM frequency. Finally, for each GM frequency in the DP-gram, sliding correlations from 108 normal ears were performed on both DPOAEs by holding the primaries producing the 2f_1 - f_2 DPOAE constant, while all 2f_2 - f_1 DPOAE amplitudes were successively correlated with the 2f_1 - f_2 amplitudes. This procedure demonstrated that, for a given GM frequency producing the 2f_1 - f_2, the correlations between the two DPOAEs peaked when the primaries of the 2f_2 - f_1 were at a GM frequency that positioned the 2f_2 - f_1 frequency place near the GM of the primaries that produced the 2f_1 - f_2 DPOAE. As a whole, the above findings strongly suggest that the 2f_2 - f_1 DPOAE in humans is generated basal to the primary-tone place on the basilar membrane.
机译:本研究使用失真产物耳声发射(DPOAE)抑制调谐曲线(STCs),DPOAE起病潜伏期(OLs)和DPOAE幅度相关性研究了人类中2f_1-f_2 DPOAE与2f_2-f_1 DPOAE的产生轨迹。调优研究的结果表明,对于2f_1-f_2 DPOAE,STC的尖端始终调至低于主音的几何平均(GM)频率。相反,对于2f_2-f_1 DPOAE,STC调谐在原色的GM之上,且50%的尖端频率在2f_2-f_1频率处或以上。当计算2f_2-f_1与2f_1-f_2尖端频率的平均比率时,系数1.44提供了对齐两个DPOAE生成位点所需的频移估计值。其他结果表明,2f_2-f_1 DPOAE的OLs均匀地短于2f_1-f_2的OLs,在低频处的差异高达6-7 ms。此外,对于两个DPOAE,描述等待时间随GM频率增加而降低的曲线最适合幂函数。将产生2f_2-f_1 DPOAE的GM频率偏移1.6倍会导致两个DPOAE的等待时间分布重叠,从而导致将单个耳蜗延迟描述为GM频率的函数。最后,对于DP克中的每个GM频率,通过使产生2f_1-f_2 DPOAE的原色保持恒定,在两个DPOAE上执行来自108只正常耳朵的滑动相关,而所有2f_2-f_1 DPOAE振幅都与2f_1-f_2连续相关。振幅。此过程表明,对于给定的产生2f_1-f_2的GM频率,当2f_2-f_1的原色位于将2f_2-f_1频率位置靠近原色GM的GM频率时,两个DPOAE之间的相关性达到峰值。产生了2f_1-f_2 DPOAE。总体而言,以上发现强烈表明,人类2f_2-f_1 DPOAE的产生是基于基底膜上的基调位置。

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