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人工耳蜗植入受者外周神经兴奋的实用模型描述:1. 响度和电诱发复合动作电位(ECAP)幅度随电流的增长。

Practical model description of peripheral neural excitation in cochlear implant recipients: 1. Growth of loudness and ECAP amplitude with current.

作者信息

Cohen Lawrence T

机构信息

Department of Otolaryngology, The University of Melbourne, 384-388 Albert Street, East Melbourne, Vic. 3002, Australia.

出版信息

Hear Res. 2009 Jan;247(2):87-99. doi: 10.1016/j.heares.2008.11.003. Epub 2008 Nov 27.

Abstract

This is the first in a series of five papers, presenting the development of a practical mathematical model that describes excitation of the auditory nerve by electrical stimulation from a cochlear implant. Here are presented methods and basic data for the subjects, who were implanted with the Nucleus 24 cochlear implant system (three with straight and three with Contour electrode arrays), required as background for all papers. The growth of subjective loudness with stimulus current was studied, for low-rate pulse bursts and for single pulses. The growth of the amplitude of the compound action potential (ECAP) was recorded using the Neural Response Telemetry (NRT) system. An approximately linear relationship was demonstrated between ECAP amplitude and burst loudness, although this failed at the lower end of the dynamic range, to an extent that varied with subject and stimulated electrode. Single-pulse stimuli were audible below ECAP threshold, demonstrating that the audibility of burst stimuli at such low currents was not due solely to temporal loudness summation. An approximate function was established relating the curvature of the burst loudness growth function to the maximum comfortable level (MCL). Loudness at threshold was quantified, as a percentage of loudness at MCL. The relationship between loudness and ECAP growth functions, the curvature versus MCL function and the loudness associated with threshold are relevant to the development of a mathematical model of electrically evoked auditory nerve excitation.

摘要

这是五篇系列论文中的第一篇,介绍了一个实用数学模型的开发,该模型描述了人工耳蜗电刺激对听神经的激发。本文介绍了作为所有论文背景所需的受试者的方法和基础数据,这些受试者植入了Nucleus 24人工耳蜗系统(3人使用直电极阵列,3人使用弯电极阵列)。研究了低速率脉冲串和单脉冲刺激下主观响度随刺激电流的增长情况。使用神经反应遥测(NRT)系统记录复合动作电位(ECAP)幅度的增长。结果表明,ECAP幅度与脉冲串响度之间存在近似线性关系,尽管在动态范围的低端这种关系不成立,且不成立的程度因受试者和受刺激电极而异。单脉冲刺激在低于ECAP阈值时可被听到,这表明在如此低电流下脉冲串刺激的可听性并非仅由于时间响度总和。建立了一个近似函数,将脉冲串响度增长函数的曲率与最大舒适水平(MCL)联系起来。对阈值响度进行了量化,以MCL响度的百分比表示。响度与ECAP增长函数之间的关系、曲率与MCL函数之间的关系以及与阈值相关的响度与电诱发听神经兴奋数学模型的开发相关。

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