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现代人工耳蜗的生物医学工程原理和最新的手术创新。

Biomedical engineering principles of modern cochlear implants and recent surgical innovations.

机构信息

Department of Otolaryngology, University of Miami Miller School of Medicine, University of Miami Ear Institute, Miami, Florida 33136-1015, USA.

出版信息

Anat Rec (Hoboken). 2012 Nov;295(11):1957-66. doi: 10.1002/ar.22584. Epub 2012 Oct 8.

Abstract

This review covers the most recent clinical and surgical advances made in the development and application of cochlear implants (CIs). In recent years, dramatic progress has been made in both clinical and basic science aspect of cochlear implantation. Today's modern CI uses multi-channel electrodes with highly miniaturized powerful digital processing chips. This review article describes the function of various components of the modern multi-channel CIs. A selection of the most recent clinical and surgical innovations is presented. This includes the preliminary results with electro-acoustic stimulation or hybrid devices and ongoing basic science research that is focused on the preservation of residual hearing post-implantation. The result of an original device that uses a binaural stimulation mode with a single implanted receiver/stimulator is also presented. The benefit and surgical design of a temporalis pocket technique for the implant's receiver stimulator is discussed. Advances in biomedical engineering and surgical innovations that lead to an increasingly favorable clinical outcome and to an expansion of the indication of CI surgery are presented and discussed.

摘要

本文综述了近年来在人工耳蜗(CI)的开发和应用方面取得的最新临床和外科进展。近年来,在耳蜗植入的临床和基础科学方面都取得了巨大的进步。如今的现代 CI 使用具有高度微型化的强大数字处理芯片的多通道电极。本文描述了现代多通道 CI 的各个组成部分的功能。本文还介绍了一些最新的临床和外科创新,包括电声刺激或混合装置的初步结果,以及目前专注于植入后保留残余听力的基础科学研究。本文还介绍并讨论了一种使用单个植入式接收器/刺激器的双耳刺激模式的原始设备的结果。讨论了植入物接收器刺激器的颞肌袋技术的优势和手术设计。本文介绍并讨论了生物医学工程的进步和外科创新,这些进步带来了越来越好的临床效果,并扩大了 CI 手术的适应证。

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