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首页> 外文期刊>The Journal of the Acoustical Society of America >Further evaluation of a model of loudness perception applied to cochlear hearing loss.
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Further evaluation of a model of loudness perception applied to cochlear hearing loss.

机译:响度感知模型应用于耳聋的进一步评估。

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This paper describes further tests of a model for loudness perception in people with cochlear hearing loss. It is assumed that the hearing loss (the elevation in absolute threshold) at each audiometric frequency can be partitioned into a loss due to damage to outer hair cells (OHCs) and a loss due to damage to inner hair cells (IHCs) and/or neurons. The former affects primarily the active mechanism that amplifies the basilar membrane (BM) response to weak sounds. It is modeled by increasing the excitation level required for threshold, which results in a steeper growth of specific loudness with increasing excitation level. Loss of frequency selectivity, which results in broader excitation patterns, is also assumed to be directly related to the OHC loss. IHC damage is modeled by an attenuation of the calculated excitation level at each frequency. The model also allows for the possibility of complete loss of IHCs or functional neurons at certain places within the cochlea ("dead" regions). The parameters of the model (OHC loss at each audiometric frequency, plus frequency limits of the dead regions) were determined for three subjects with unilateral cochlear hearing loss, using data on loudness matches between sinusoids presented alternately to their two ears. Further experiments used bands of noise that were either 1-equivalent rectangular bandwidth (ERB) wide or 6-ERBs wide, centered at 1 kHz. Subjects made loudness matches for these bands of noise both within ears and across ears. The model was reasonably accurate in predicting the results of these matches without any further adjustment of the parameters.
机译:本文描述了耳蜗听力下降患者的响度感知模型的进一步测试。假设可以将每个测听频率的听力损失(绝对阈值的升高)划分为由于对外部毛细胞(OHC)的损害而造成的损失和由于对内部毛细胞(IHC)和/或损害的损害而造成的损失神经元。前者主要影响放大基底膜(BM)对微弱声音的响应的主动机制。通过增加阈值所需的激励水平来建模,随着激励水平的增加,特定响度会急剧增加。频率选择性的损失(导致更广泛的激励模式)也被认为与OHC损失直接相关。通过在每个频率上计算出的激励水平的衰减来模拟IHC损坏。该模型还允许在耳蜗内的某些位置(“死区”)完全丢失IHC或功能神经元。使用与两只耳朵交替出现的正弦曲线之间的响度匹配数据,确定了三名单侧耳蜗听力损失的受试者的模型参数(每个测听频率处的OHC损失,加上死区的频率限制)。进一步的实验使用了以1 kHz为中心的等于1个等效矩形带宽(ERB)或6个ERB宽的噪声带。受试者对耳内和耳间的这些噪声带进行了响度匹配。该模型在预测这些匹配的结果时相当准确,而无需进一步调整参数。

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