首页> 外文会议>Electron Devices Meeting, 2002. IEDM '02. Digest. International >Fully-implantable auditory prostheses: restoring hearing to the profoundly deaf
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Fully-implantable auditory prostheses: restoring hearing to the profoundly deaf

机译:完全可植入的听觉假体:恢复严重耳聋的听力

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Present cochlear prostheses employ up to 24 electrodes to electrically stimulate the auditory nerve with currents of 200-800 /spl mu/A, charge-balanced pulse rates of 100 Kpps or more, and pulse widths of 20-200 /spl mu/sec/phase. To explore performance limits, MEMS-based microsystems will soon provide as many as 128 electrode sites and up to 16 parallel data channels. Fully-implantable microsystems for the cochlear nucleus are also being developed using 3D arrays of penetrating electrodes. Button-size implant prototypes with 1024 multiplexed electrode sites on 400 /spl mu/m centers have been realized. Packaging techniques are consistent with many decades of use in-vivo, while wireless interfaces can provide data at over 1 Mb/s in addition to power. These implantable microsystems will restore hearing to an expanding population of individuals during the coming decade as well as serve as a generic platform for dealing with a number of other disorders.
机译:目前的人工耳蜗使用多达24个电极以200-800 / spl mu / A的电流,100 Kpps或更高的电荷平衡脉冲速率以及20-200 / spl mu / sec /的脉冲宽度电刺激听觉神经。阶段。为了探索性能极限,基于MEMS的微系统很快将提供多达128个电极位和多达16个并行数据通道。还正在使用穿透电极的3D阵列开发用于耳蜗核的完全植入式微系统。已经实现了按钮大小的植入物原型,该原型在400 / splμm/ m的中心具有1024个多路复用电极位。封装技术与数十年来的体内使用是一致的,而无线接口除功率外还可以提供超过1 Mb / s的数据。这些可植入的微系统将在未来十年内恢复越来越多的个体的听力,并作为应对许多其他疾病的通用平台。

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