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首页> 外文期刊>The Journal of the Acoustical Society of America >Differentiation of cochlear pathophysiology in ears damaged by salicylate or a pure tone using a nonlinear systems identification technique
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Differentiation of cochlear pathophysiology in ears damaged by salicylate or a pure tone using a nonlinear systems identification technique

机译:使用非线性系统识别技术区分水杨酸酯或纯音损伤的耳蜗病理生理

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摘要

Mongolian gerbils were exposed to either α-ketoglutarate, salicylate, or an 8-kHz pure tone. Cochlear microphonic (CM) was recorded from the round window in response to 68 and 88 dB SPL Gaussian noise. A nonlinear systems identification technique provided the frequency-domain parameters of a third-order polynomial model characterizing cochlear mechano-electric transduction (MET). A series of physiologic indices were derived from further exploration of the model. Exposure to the 8-kHz pure tone and round window application of salicylate resulted in different changes in the polynomial parameters and physiologic indices even though the threshold shifts were similar. A general reduction of CM magnitude was found after the tone exposure, and an increase at low-mid frequencies was demonstrated in the salicylate group especially at the lower signal level. The slope of the MET curve was reduced by the acoustic overstimulation. The root or the operating point of the MET was shifted in opposite directions after the two treatments. Sound-pressure levels that saturate MET expanded in the tone exposure group and narrowed in the salicylate group. The signal level also had effects on these indices.
机译:蒙古沙鼠暴露于α-酮戊二酸酯,水杨酸盐或8 kHz纯音。响应68和88 dB SPL高斯噪声,从圆形窗口记录了耳蜗微音(CM)。非线性系统识别技术提供了表征耳蜗机电转换(MET)的三阶多项式模型的频域参数。从对该模型的进一步探索中获得了一系列生理指标。即使阈值漂移相似,暴露于8 kHz纯音和水杨酸酯的圆窗应用也会导致多项式参数和生理指标发生不同的变化。音调暴露后,CM幅度普遍降低,并且在水杨酸酯组中,尤其是在较低信号电平下,在中低频率处表现出增加。 MET曲线的斜率由于声音的过度刺激而减小。两次处理后,MET的根或工作点向相反方向移动。使MET饱和的声压级在音频暴露组中扩大,而在水杨酸盐组中变窄。信号电平也影响这些指标。

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