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基底膜非线性与响度

Basilar membrane nonlinearity and loudness.

作者信息

Schlauch R S, DiGiovanni J J, Ries D T

机构信息

Department of Communication Disorders, University of Minnesota, Minneapolis 55455, USA.

出版信息

J Acoust Soc Am. 1998 Apr;103(4):2010-20. doi: 10.1121/1.421379.

Abstract

Loudness matching functions for tones for persons with one shifted-threshold ear (hearing loss and noise-shifted thresholds) and one ear within normal limits were used to derive the presumed basilar membrane (BM) input-output (I/O) function in a normal ear. The comparison was made by assuming that the BM I/O function for the ear with the cochlear threshold shift has a slope of one (a linearized cochlea). The function for the normal ear was derived from the loudness matching function based on this assumption. Comparisons were made for archival basilar membrane data [M. A. Ruggero, N. C. Rich, A. Recio, S. S. Narayan, and L. Robles, J. Acoust. Soc. Am. 101, 2151-2163 (1997)] for chinchilla and archival loudness matches for long-duration tones for persons with various degrees of cochlear hearing loss [F. Miskolczy-Fodor, J. Acoust Soc. Am. 32, 486-492 (1960)]. Comparisons were made also between BM I/O functions and ones derived from loudness matches for persons with unilateral hearing loss simulated by broadband noise. The results show a close resemblance between the basilar membrane I/O function and the function derived from loudness matches for long-duration tones, even though the comparison was between human and chinchilla data. As the degree of threshold shift increases from 40 to 80 dB, the derived BM I/O functions become shallower, with slopes for losses of 60 dB or more falling in the range of values reported for physiological data. Additional measures with short-duration tones in noise show that the slope of the loudness function and the slope of the derived basilar membrane I/O function are associated with the behavioral threshold for the tone. The results for long-duration tones suggest a correspondence between BM displacement and loudness perception in cases of recruitment, but the relation between the degree of loss and the amount of BM compression and the relation between signal duration and compression suggests that other factors, such as the neural population response, may play a role.

摘要

针对一只耳阈值偏移(听力损失和噪声导致的阈值偏移)而另一只耳正常的人,使用其音调响度匹配函数来推导正常耳中假定的基底膜(BM)输入-输出(I/O)函数。通过假设耳蜗阈值偏移耳的BM I/O函数斜率为1(线性化耳蜗)来进行比较。基于此假设,从响度匹配函数中推导出正常耳的函数。对南美栗鼠的存档基底膜数据[M. A. 鲁杰罗、N. C. 里奇、A. 雷西奥、S. S. 纳拉扬和L. 罗夫莱斯,《美国声学学会杂志》101, 2151 - 2163 (1997)]以及不同程度耳蜗听力损失患者的长时音调存档响度匹配数据[F. 米斯科尔齐 - 福多尔,《美国声学学会杂志》32, 486 - 492 (1960)]进行了比较。还对BM I/O函数与由宽带噪声模拟的单侧听力损失患者的响度匹配推导得到的函数进行了比较。结果表明,尽管是在人类和南美栗鼠数据之间进行比较,但基底膜I/O函数与长时音调响度匹配推导得到的函数之间有密切相似性。随着阈值偏移程度从40分贝增加到80分贝,推导得到的BM I/O函数变得更平缓,60分贝及以上损失的斜率落在生理数据报告的值范围内。在噪声中使用短时音调的额外测量表明,响度函数的斜率和推导得到 的基底膜I/O函数的斜率与音调的行为阈值相关。长时音调的结果表明,在重振情况下BM位移与响度感知之间存在对应关系,但损失程度与BM压缩量之间的关系以及信号持续时间与压缩之间的关系表明,其他因素,如神经群体反应,可能也起作用。

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