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人类耳蜗电诱发复合动作电位的简单双组分模型。

A simple two-component model of the electrically evoked compound action potential in the human cochlea.

作者信息

Lai W K, Dillier N

机构信息

ENT Department, University Hospital, Zurich, Switzerland.

出版信息

Audiol Neurootol. 2000 Nov-Dec;5(6):333-45. doi: 10.1159/000013899.

Abstract

Neural response telemetry (NRT) permits in situ intracochlear recordings of the electrically evoked compound action potential from the auditory nerves using scala tympani electrodes. The recorded NRT waveforms can generally be categorized under either single positive peak or double positive peak waveforms. This is similar to the observations from Stypulkowski and van den Honert, who suggested that the double peak complex arises from two components that could be axonal and dendritic in origin, respectively. Using a simple mathematical model which linearly combines two separate waveforms similar in shape but differing in amplitude and latencies, it was possible to simulate the various NRT waveform categories. The simulation results support the view that the two waveform components originate from dendritic or axonal processes and implies that the shape of the response waveform may provide information about the degree of neural survival in the stimulated cochlea. This information could be useful for determining optimal speech coding parameters for cochlear implant users on an individual basis.

摘要

神经反应遥测技术(NRT)允许使用鼓阶电极对听觉神经的电诱发复合动作电位进行原位耳蜗内记录。记录的NRT波形通常可分为单正峰或双正峰波形。这与Stypulkowski和van den Honert的观察结果相似,他们认为双峰复合体分别来自两个可能起源于轴突和树突的成分。使用一个简单的数学模型,该模型将两个形状相似但幅度和潜伏期不同的单独波形进行线性组合,就有可能模拟各种NRT波形类别。模拟结果支持了这样一种观点,即两个波形成分起源于树突或轴突过程,并暗示响应波形的形状可能提供有关受刺激耳蜗中神经存活程度的信息。这些信息对于为人工耳蜗使用者个体确定最佳语音编码参数可能是有用的。

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