首页> 美国卫生研究院文献>Philosophical Transactions of the Royal Society B: Biological Sciences >The multiple-channel cochlear implant: the interface between sound and the central nervous system for hearing speech and language in deaf people—a personal perspective
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The multiple-channel cochlear implant: the interface between sound and the central nervous system for hearing speech and language in deaf people—a personal perspective

机译:多通道人工耳蜗:聋人的声音与中枢神经系统之间的接口以进行听力言语和语言交流-个人观点

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摘要

The multiple-channel cochlear implant is the first sensori-neural prosthesis to effectively and safely bring electronic technology into a direct physiological relation with the central nervous system and human consciousness, and to give speech perception to severely-profoundly deaf people and spoken language to children.Research showed that the place and temporal coding of sound frequencies could be partly replicated by multiple-channel stimulation of the auditory nerve. This required safety studies on how to prevent the effects to the cochlea of trauma, electrical stimuli, biomaterials and middle ear infection. The mechanical properties of an array and mode of stimulation for the place coding of speech frequencies were determined.A fully implantable receiver–stimulator was developed, as well as the procedures for the clinical assessment of deaf people, and the surgical placement of the device. The perception of electrically coded sounds was determined, and a speech processing strategy discovered that enabled late-deafened adults to comprehend running speech. The brain processing systems for patterns of electrical stimuli reproducing speech were elucidated. The research was developed industrially, and improvements in speech processing made through presenting additional speech frequencies by place coding. Finally, the importance of the multiple-channel cochlear implant for early deafened children was established.
机译:多通道人工耳蜗是第一个将神经技术有效,安全地带入中枢神经系统和人类意识的直接生理关系中,并为严重聋哑人提供语音感知并为儿童提供口语的第一感觉神经假体研究表明,听觉神经的多通道刺激可以部分复制声频的位置和时间编码。这就需要进行安全性研究,以研究如何预防外伤,电刺激,生物材料和中耳感染对耳蜗的影响。确定了阵列的机械性能和用于语音频率位置编码的刺激模式。开发了一种完全可植入的接收器-刺激器,以及聋人的临床评估程序和该设备的手术放置。确定了对电编码声音的感知,并发现了语音处理策略,使晚期耳聋的成年人能够理解跑步的语音。阐明了用于电刺激再现语音模式的大脑处理系统。该研究是工业上发展的,并且通过位置编码来呈现附加的语音频率来改进语音处理。最后,确立了多通道人工耳蜗对于早期聋哑儿童的重要性。

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