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The influence of cochlear spectral processing on the timing and amplitude of the speech-evoked auditory brain stem response

机译:耳蜗频谱处理对语音诱发听觉脑干反应的时间和幅度的影响

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摘要

The speech-evoked auditory brain stem response (speech ABR) is widely considered to provide an index of the quality of neural temporal encoding in the central auditory pathway. The aim of the present study was to evaluate the extent to which the speech ABR is shaped by spectral processing in the cochlea. High-pass noise masking was used to record speech ABRs from delimited octave-wide frequency bands between 0.5 and 8 kHz in normal-hearing young adults. The latency of the frequency-delimited responses decreased from the lowest to the highest frequency band by up to 3.6 ms. The observed frequency-latency function was compatible with model predictions based on wave V of the click ABR. The frequency-delimited speech ABR amplitude was largest in the 2- to 4-kHz frequency band and decreased toward both higher and lower frequency bands despite the predominance of low-frequency energy in the speech stimulus. We argue that the frequency dependence of speech ABR latency and amplitude results from the decrease in cochlear filter width with decreasing frequency. The results suggest that the amplitude and latency of the speech ABR may reflect interindividual differences in cochlear, as well as central, processing. The high-pass noise-masking technique provides a useful tool for differentiating between peripheral and central effects on the speech ABR. It can be used for further elucidating the neural basis of the perceptual speech deficits that have been associated with individual differences in speech ABR characteristics.
机译:语音诱发的听觉脑干反应(语音ABR)被广泛认为可提供中央听觉通路中神经时间编码质量的指标。本研究的目的是评估耳蜗中频谱处理对语音ABR的影响程度。在正常听力的年轻人中,高通噪声掩膜用于记录来自0.5至8 kHz之间定界八度音阶频带的语音ABR。频率定界响应的等待时间从最低频段到最高频段减少了多达3.6毫秒。观察到的频率延迟函数与基于点击ABR的波V的模型预测兼容。尽管语音刺激中低频能量占主导地位,但定频语音ABR振幅在2至4 kHz频带中最大,并朝着较高和较低频带减小。我们认为,语音ABR潜伏期和幅度的频率依赖性是由于耳蜗滤波器宽度随频率降低而降低的结果。结果表明,语音ABR的振幅和潜伏期可能反映了耳蜗和中央处理器之间的个体差异。高通噪声掩蔽技术提供了一种有用的工具,可区分语音ABR的周边和中央效果。它可用于进一步阐明与语音ABR特征的个体差异有关的知觉语音缺陷的神经基础。

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