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由低水平和高水平原始信号产生的畸变产物耳声发射的一个来源。

One source for distortion product otoacoustic emissions generated by low- and high-level primaries.

作者信息

Lukashkin Andrei N, Lukashkina Victoria A, Russell Ian J

机构信息

School of Biological Sciences, University of Sussex, Brighton, United Kingdom.

出版信息

J Acoust Soc Am. 2002 Jun;111(6):2740-8. doi: 10.1121/1.1479151.

Abstract

Distortion product otoacoustic emissions (DPOAE) elicited by tones below 60-70 dB sound pressure level (SPL) are significantly more sensitive to cochlear insults. The vulnerable, low-level DPOAE have been associated with the postulated active cochlear process, whereas the relatively robust high-level DPOAE component has been attributed to the passive, nonlinear macromechanical properties of the cochlea. However, it is proposed that the differences in the vulnerability of DPOAEs to high and low SPLs is a natural consequence of the way the cochlea responds to high and low SPLs. An active process boosts the basilar membrane (BM) vibrations, which are attenuated when the active process is impaired. However, at high SPLs the contribution of the active process to BM vibration is small compared with the dominating passive mechanical properties of the BM. Consequently, reduction of active cochlear amplification will have greatest effect on BM vibrations and DPOAEs at low SPLs. To distinguish between the "two sources" and the "single source" hypotheses we analyzed the level dependence of the notch and corresponding phase discontinuity in plots of DPOAE magnitude and phase as functions of the level of the primaries. In experiments where furosemide was used to reduce cochlear amplification, an upward shift of the notch supports the conclusion that both the low- and high-level DPOAEs are generated by a single source, namely a nonlinear amplifier with saturating I/O characteristic.

摘要

由低于60 - 70分贝声压级(SPL)的纯音引出的畸变产物耳声发射(DPOAE)对耳蜗损伤更为敏感。脆弱的低水平DPOAE与推测的耳蜗主动过程相关,而相对较强的高水平DPOAE成分则归因于耳蜗的被动非线性宏观力学特性。然而,有人提出DPOAE对高低SPL的敏感性差异是耳蜗对高低SPL反应方式的自然结果。一个主动过程增强了基底膜(BM)的振动,当主动过程受损时,这种振动会减弱。然而,在高SPL时,与BM占主导地位的被动力学特性相比,主动过程对BM振动的贡献较小。因此,耳蜗主动放大的降低对低SPL时的BM振动和DPOAE影响最大。为了区分“双源”和“单源”假说,我们在DPOAE幅度和相位作为原刺激声级函数的图中分析了切迹和相应相位不连续性的声级依赖性。在使用速尿降低耳蜗放大的实验中,切迹的上移支持了低水平和高水平DPOAE均由单一源产生的结论,即具有饱和输入/输出特性的非线性放大器。

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