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Phenomenological modelling of electrically stimulated auditory nerve fibers: A review

机译:电刺激听神经纤维的现象学建模:综述

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摘要

Auditory nerve fibers (ANFs) play a crucial role in hearing by encoding and transporting the synaptic input from inner hair cells into afferent spiking information for higher stages of the auditory system. If the inner hair cells are degenerated, cochlear implants may restore hearing by directly stimulating the ANFs. The response of an ANF is affected by several characteristics of the electrical stimulus and of the ANF, and neurophysiological measurements are needed to know how the ANF responds to a particular stimulus. However, recording from individual nerve fibers in humans is not feasible and obtaining compound neural or psychophysical responses is often time-consuming. This motivates the design and use of models to estimate the ANF response to the electrical stimulation. Phenomenological models reproduce the ANF response based on a simplified description of ANF functionality and on a limited parameter space by not directly describing detailed biophysical mechanisms. Here, we give an overview of phenomenological models published to date and demonstrate how different modeling approaches can account for the diverse phenomena affecting the ANF response. To highlight the success achieved in designing such models, we also describe a number of applications of phenomenological models to predict percepts of cochlear implant listeners.
机译:听觉神经纤维(ANFs)通过将来自内部毛细胞的突触输入编码和运输到听觉系统的更高阶段的传入尖峰信息中,在听力中起着至关重要的作用。如果内部毛细胞退化,人工耳蜗可以通过直接刺激ANFs恢复听力。 ANF的反应受电刺激和ANF的几个特性影响,需要进行神经生理学测量才能知道ANF如何响应特定刺激。但是,从人类的单个神经纤维进行记录是不可行的,获得复合神经或心理物理反应通常很耗时。这激励了模型的设计和使用,以估计ANF对电刺激的响应。现象学模型通过不直接描述详细的生物物理机制,基于对ANF功能的简化描述和有限的参数空间来重现ANF响应。在这里,我们概述了迄今为止发布的现象学模型,并演示了不同的建模方法如何解释影响ANF响应的各种现象。为了突出设计此类模型的成功,我们还描述了许多现象学模型在预测人工耳蜗听众感知方面的应用。

著录项

  • 来源
    《Network》 |2016年第4期|157-185|共29页
  • 作者单位

    Audio Information Processing, Department of Electrical and Computer Engineering, Technical University of Munich, Arcisstrasse 21, Munich 80333, Germany;

    Department of Electrical and Computer Engineering, McMaster University, Hamilton, ON, Canada;

    Audio Information Processing, Department of Electrical and Computer Engineering, Technical University of Munich, Munich, Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Auditory system; single neuron computation; psychophysics; spiking neurons; auditory prosthesis; auditory models;

    机译:听觉系统;单神经元计算;心理物理学尖刺的神经元;听觉假体听觉模型;
  • 入库时间 2022-08-18 01:47:11

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