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基于假体视觉心理物理学研究的康复方案。

Rehabilitation regimes based upon psychophysical studies of prosthetic vision.

作者信息

Chen S C, Suaning G J, Morley J W, Lovell N H

机构信息

Graduate School of Biomedical Engineering, University of New South Wales, Kensington, NSW 2052, Australia.

出版信息

J Neural Eng. 2009 Jun;6(3):035009. doi: 10.1088/1741-2560/6/3/035009. Epub 2009 May 20.

Abstract

Human trials of prototype visual prostheses have successfully elicited visual percepts (phosphenes) in the visual field of implant recipients blinded through retinitis pigmentosa and age-related macular degeneration. Researchers are progressing rapidly towards a device that utilizes individual phosphenes as the elementary building blocks to compose a visual scene. This form of prosthetic vision is expected, in the near term, to have low resolution, large inter-phosphene gaps, distorted spatial distribution of phosphenes, restricted field of view, an eccentrically located phosphene field and limited number of expressible luminance levels. In order to fully realize the potential of these devices, there needs to be a training and rehabilitation program which aims to assist the prosthesis recipients to understand what they are seeing, and also to adapt their viewing habits to optimize the performance of the device. Based on the literature of psychophysical studies in simulated and real prosthetic vision, this paper proposes a comprehensive, theoretical training regime for a prosthesis recipient: visual search, visual acuity, reading, face/object recognition, hand-eye coordination and navigation. The aim of these tasks is to train the recipients to conduct visual scanning, eccentric viewing and reading, discerning low-contrast visual information, and coordinating bodily actions for visual-guided tasks under prosthetic vision. These skills have been identified as playing an important role in making prosthetic vision functional for the daily activities of their recipients.

摘要

视觉假体原型的人体试验已成功在因视网膜色素变性和年龄相关性黄斑变性而失明的植入接受者视野中诱发视觉感知(光幻视)。研究人员正在迅速朝着一种将单个光幻视作为组成视觉场景的基本构建块的设备迈进。这种形式的假体视觉在短期内预计分辨率低、光幻视之间的间隙大、光幻视的空间分布扭曲、视野受限、光幻视场偏心定位且可表达的亮度水平数量有限。为了充分实现这些设备的潜力,需要一个培训和康复计划,旨在帮助假体接受者理解他们所看到的内容,并调整他们的观看习惯以优化设备的性能。基于模拟和真实假体视觉的心理物理学研究文献,本文为假体接受者提出了一个全面的理论培训方案:视觉搜索、视敏度、阅读、面部/物体识别、手眼协调和导航。这些任务的目的是训练接受者进行视觉扫描、偏心注视和阅读,辨别低对比度视觉信息,并在假体视觉下协调身体动作以完成视觉引导任务。这些技能已被确定在使假体视觉对接受者的日常活动发挥作用方面起着重要作用。

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