Effects of high-rate pulse trains on electrode discrimination in cochlear implant users.

Christina L Runge-Samuelson
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引用次数: 3

Abstract

Overcoming issues related to abnormally high neural synchrony in response to electrical stimulation is one aspect in improving hearing with a cochlear implant. Desynchronization of electrical stimuli have shown benefits in neural encoding of electrical signals and improvements in psychophysical tasks. In the present study, 10 participants with either CII or HiRes 90k Advanced Bionics devices were tested for the effects of desynchronizing constant-amplitude high-rate (5,000 Hz) pulse trains on electrode discrimination of sinusoidal stimuli (1,000 Hz). When averaged across the sinusoidal dynamic range, overall improvements in electrode discrimination with high-rate pulses were found for 8 of 10 participants. This effect was significant for the group (p = .003). Nonmonotonic patterns of electrode discrimination as a function of sinusoidal stimulation level were observed. By providing additional spectral channels, it is possible that clinical implementation of constant-amplitude high-rate pulse trains in a signal processing strategy may improve performance with the device.

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高速率脉冲序列对人工耳蜗使用者电极识别的影响。
克服与电刺激反应异常高神经同步性相关的问题是人工耳蜗改善听力的一个方面。电刺激的去同步在电信号的神经编码和心理物理任务的改善方面显示出益处。在本研究中,10名参与者使用CII或HiRes 90k高级仿生学设备测试了非同步恒幅高速率(5,000 Hz)脉冲序列对正弦刺激(1,000 Hz)电极识别的影响。当在正弦动态范围内平均时,10名参与者中有8名在高速率脉冲下电极识别的总体改善。该效应在组内显著(p = 0.003)。观察到电极识别的非单调模式作为正弦刺激水平的函数。通过提供额外的频谱通道,临床上在信号处理策略中实现等幅高速率脉冲序列可能会提高设备的性能。
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Trends in Amplification
Trends in Amplification AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY-OTORHINOLARYNGOLOGY
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