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用于盲人的视觉假体。

Visual prostheses for the blind.

机构信息

Bionics Institute, 384-388 Albert St East Melbourne, 3002, Victoria, Australia; Medical Bionics Department, University of Melbourne, 384-388 Albert St East Melbourne, 3002, Victoria, Australia.

出版信息

Trends Biotechnol. 2013 Oct;31(10):562-71. doi: 10.1016/j.tibtech.2013.07.001. Epub 2013 Aug 14.

Abstract

After more than 40 years of research, visual prostheses are moving from the laboratory into the clinic. These devices are designed to provide prosthetic vision to the blind by stimulating localized neural populations in one of the retinotopically organized structures of the visual pathway - typically the retina or visual cortex. The long gestation of this research reflects the many significant technical challenges encountered including surgical access, mechanical stability, hardware miniaturization, hermetic encapsulation, high-density electrode arrays, and signal processing. This review provides an introduction to the pathophysiology of blindness; an overview of existing visual prostheses, their advantages and drawbacks; the perceptual effects evoked by electrical stimulation; as well as the role played by plasticity and training in clinical outcomes.

摘要

经过 40 多年的研究,视觉假体正在从实验室走向临床。这些设备旨在通过刺激视觉通路的视网膜或视皮层等视网膜组织化结构中的局部神经群体,为盲人提供人工视觉。这项研究经历了漫长的孕育过程,反映出许多重大的技术挑战,包括手术途径、机械稳定性、硬件微型化、密封封装、高密度电极阵列和信号处理。本文介绍了失明的病理生理学;现有的视觉假体及其优缺点概述;电刺激引起的知觉效应;以及可塑性和训练在临床结果中的作用。

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