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Stimulus-frequency otoacoustic emission: Measurements in humans and simulations with an active cochlear model

机译:刺激频率的耳声发射:人类的测量和主动耳蜗模型的模拟

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摘要

An efficient method for measuring stimulus-frequency otoacoustic emissions (SFOAEs) was developed incorporating (1) stimulus with swept frequency or level and (2) the digital heterodyne analysis. SFOAEs were measured for 550–1450 Hz and stimulus levels of 32–62 dB sound pressure level in eight normal human adults. The mean level, number of peaks, frequency spacing between peaks, phase change, and energy-weighted group delays of SFOAEs were determined. Salient features of the human SFOAEs were stimulated with an active cochlear model containing spatially low-pass filtered irregularity in the impedance. An objective fitting procedure yielded an optimal set of model parameters where, with decreasing stimulus level, the amount of cochlear amplification and the base amplitude of the irregularity increased while the spatial low-pass cutoff and the slope of the spatial low-pass filter decreased. The characteristics of the human cochlea were inferred with the model. In the model, an SFOAE consisted of a long-delay component originating from irregularity in a traveling-wave peak region and a short-delay component originating from irregularity in regions remote from the peak. The results of this study should be useful both for understanding cochlear function and for developing a clinical method of assessing cochlear status.
机译:开发了一种有效的测量刺激频率耳声发射(SFOAE)的方法,其中包括(1)具有扫频或水平扫频的刺激和(2)数字外差分析。在八名正常成年人中,对SFOAE的测量值为550–1450 Hz,刺激水平为32–62 dB声压级。确定了SFOAE的平均水平,峰数,峰之间的频率间隔,相变以及能量加权的群延迟。人类SFOAE的显着特征是通过主动的耳蜗模型刺激的,该模型在阻抗中包含空间低通滤波的不规则性。客观的拟合过程产生了一组最佳的模型参数,其中随着刺激水平的降低,耳蜗放大的数量和不规则性的基本幅度增加,而空间低通截止点和空间低通滤波器的斜率减小。用该模型推断人耳蜗的特征。在该模型中,SFOAE由源自行波峰区域中不规则性的长延迟分量和源自远离峰区域中的不规则性的短延迟分量组成。这项研究的结果应有助于理解耳蜗功能和开发评估耳蜗状态的临床方法。

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