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Age-Related Changes in Processing Simultaneous Amplitude Modulated Sounds Assessed Using Envelope Following Responses

机译:使用响应响应包络评估的同时幅度调制声音的处理过程中与年龄相关的变化

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摘要

Listening conditions in the real world involve segregating the stimuli of interest from competing auditory stimuli that differ in their sound level and spectral content. It is in these conditions of complex spectro-temporal processing that listeners with age-related hearing loss experience the most difficulties. Envelope following responses (EFRs) provide objective neurophysiological measures of auditory processing. EFRs were obtained to two simultaneous sinusoidally amplitude modulated (sAM) tones from young and aged Fischer-344 rats. One was held at a fixed suprathreshold sound level (sAM1FL) while the second varied in sound level (sAM2VL) and carrier frequency. EFR amplitudes to sAM1FL in the young decreased with signal-to-noise ratio (SNR), and this reduction was more pronounced when the sAM2VL carrier frequency was spectrally separated from sAM1FL. Aged animals showed similar trends, while having decreased overall response amplitudes compared to the young. These results were replicated using an established computational model of the auditory nerve. The trends observed in the EFRs were shown to be due to the contributions of the low-frequency tails of high-frequency neurons, rather than neurons tuned to the sAM1FL carrier frequency. Modeling changes in threshold and neural loss reproduced some of the changes seen with age, but accuracy improved when combined with an additional decrease representing synaptic loss of auditory nerve neurons. Sound segregation in this case derives primarily from peripheral processing, regardless of age. Contributions by more central neural mechanisms are likely to occur only at low SNRs.
机译:现实世界中的聆听条件包括将感兴趣的刺激与竞争性听觉刺激隔离开,竞争性听觉刺激的声级和频谱含量不同。正是在这些复杂的频谱时间处理条件下,与年龄相关的听力损失的听众会遇到最大的困难。包膜后反应(EFR)提供听觉处理的客观神经生理学指标。从年轻和年老的Fischer-344大鼠获得两个同时正弦振幅调制(sAM)音调的EFR。一个保持在一个固定的阈上声级(sAM1FL),另一个保持声级(sAM2VL)和载频变化。年轻人中sAM1FL的EFR幅度随着信噪比(SNR)的降低而降低,并且当sAM2VL载波频率与sAM1FL频谱分离时,这种降低更为明显。与年幼的动物相比,老年动物表现出相似的趋势,但总体反应幅度有所降低。使用已建立的听觉神经计算模型复制这些结果。在EFR中观察到的趋势被证明是由于高频神经元的低频尾部的贡献,而不是调谐到sAM1FL载波频率的神经元。阈值变化和神经丢失的模型化再现了随年龄变化的一些变化,但是与代表听觉神经神经元突触丢失的附加下降相结合时,准确性得到了提高。在这种情况下,声音隔离主要来自外围处理,而不管年龄如何。更多中央神经机制的贡献可能仅在低信噪比时发生。

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