Noise enhances modulation sensitivity in cochlear implant listeners: stochastic resonance in a prosthetic sensory system?

M Chatterjee, M E Robert
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Abstract

Cochlear implants restore auditory sensitivity to the profoundly hearing-impaired by means of electrical stimulation of residual auditory nerve fibers. Sensorineural hearing loss results in a loss of spontaneous activity among the remaining auditory neurons and is accompanied by a reduction in the normal stochastic nature of neural firing in response to electric stimulation. It has been hypothesized that the natural stochasticity of the neural response is important for auditory signal processing and that introducing some optimal amount of noise into the stimulus may improve auditory perception through the implant. In this article we show that, for soft but audible stimuli, an optimal amount of "prosthetic" noise significantly improves sensitivity to envelope modulation in cochlear implant listeners. A nonmonotonic function relates modulation sensitivity and noise level, suggesting the presence of stochastic resonance.

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噪声增强人工耳蜗听者的调制敏感性:假体感觉系统中的随机共振?
人工耳蜗通过电刺激残馀听神经纤维来恢复重度听障患者的听觉敏感性。感音神经性听力损失导致剩余听觉神经元自发活动的丧失,并伴有对电刺激的正常随机神经放电的减少。据推测,神经反应的自然随机性对听觉信号处理很重要,并且在刺激中引入一些最佳数量的噪声可以通过植入物改善听觉感知。在这篇文章中,我们表明,对于软但可听的刺激,最佳量的“假体”噪声显着提高耳蜗听者对包络调制的敏感性。一个非单调函数关系到调制灵敏度和噪声水平,表明随机共振的存在。
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