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建立瞬态刺激诱发的听觉脑干反应模型。

Modeling auditory evoked brainstem responses to transient stimuli.

机构信息

Centre for Applied Hearing Research, Acoustic Technology, Department of Electrical Engineering, Technical University of Denmark, DK-2800 Kgs Lyngby, Denmark.

出版信息

J Acoust Soc Am. 2012 May;131(5):3903-13. doi: 10.1121/1.3699171.

Abstract

A quantitative model is presented that describes the formation of auditory brainstem responses (ABRs) to tone pulses, clicks, and rising chirps as a function of stimulation level. The model computes the convolution of the instantaneous discharge rates using the "humanized" nonlinear auditory-nerve model of Zilany and Bruce [J. Acoust. Soc. Am. 122, 402-417 (2007)] and an empirically derived unitary response function which is assumed to reflect contributions from different cell populations within the auditory brainstem, recorded at a given pair of electrodes on the scalp. It is shown that the model accounts for the decrease of tone-pulse evoked wave-V latency with frequency but underestimates the level dependency of the tone-pulse as well as click-evoked latency values. Furthermore, the model correctly predicts the nonlinear wave-V amplitude behavior in response to the chirp stimulation both as a function of chirp sweeping rate and level. Overall, the results support the hypothesis that the pattern of ABR generation is strongly affected by the nonlinear and dispersive processes in the cochlea.

摘要

本文提出了一个定量模型,用于描述听觉脑干反应(ABR)的形成,该反应是由刺激水平决定的,涉及到音调脉冲、点击和上升啁啾声。该模型通过使用“人性化”的 Zilany 和 Bruce 的非线性听觉神经模型[J. Acoust. Soc. Am. 122, 402-417 (2007)]和一个经验推导的单元响应函数来计算瞬时放电率的卷积,该函数被认为反映了来自听觉脑干内不同细胞群体的贡献,在头皮上给定的一对电极处记录。结果表明,该模型解释了音调脉冲诱发的波 V 潜伏期随频率的降低,但低估了音调脉冲和点击诱发的潜伏期值的水平依赖性。此外,该模型正确预测了啁啾刺激引起的非线性波 V 幅度行为,这既取决于啁啾扫描速率,也取决于其强度。总的来说,结果支持了这样一种假设,即 ABR 的产生模式受到耳蜗中非线性和弥散过程的强烈影响。

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