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使用模拟60通道植入物进行阅读。

Reading with a simulated 60-channel implant.

作者信息

Fornos Angélica Pérez, Sommerhalder Jörg, Pelizzone Marco

机构信息

Ophthalmology Clinic, Department of Clinical Neurosciences, Geneva University Hospitals Geneva, Switzerland.

出版信息

Front Neurosci. 2011 May 2;5:57. doi: 10.3389/fnins.2011.00057. eCollection 2011.

Abstract

First generation retinal prostheses containing 50-60 electrodes are currently in clinical trials. The purpose of this study was to evaluate the theoretical upper limit (best possible) reading performance attainable with a state-of-the-art 60-channel retinal implant and to find the optimum viewing conditions for the task. Four normal volunteers performed full-page text reading tasks with a low-resolution, 60-pixel viewing window that was stabilized in the central visual field. Two parameters were systematically varied: (1) spatial resolution (image magnification) and (2) the orientation of the rectangular viewing window. Performance was measured in terms of reading accuracy (% of correctly read words) and reading rates (words/min). Maximum reading performances were reached at spatial resolutions between 3.6 and 6 pixels/char. Performance declined outside this range for all subjects. In optimum viewing conditions (4.5 pixels/char), subjects achieved almost perfect reading accuracy and mean reading rates of 26 words/min for the vertical viewing window and of 34 words/min for the horizontal viewing window. These results suggest that, theoretically, some reading abilities can be restored with actual state-of-the-art retinal implant prototypes if "image magnification" is within an "optimum range." Future retinal implants providing higher pixel resolutions, thus allowing for a wider visual span might allow faster reading rates.

摘要

目前,第一代包含50 - 60个电极的视网膜假体正处于临床试验阶段。本研究的目的是评估使用最先进的60通道视网膜植入物可达到的理论上限(最佳可能)阅读性能,并找到该任务的最佳观看条件。四名正常志愿者通过一个低分辨率、60像素的观看窗口执行全页文本阅读任务,该窗口稳定在中央视野中。系统地改变了两个参数:(1)空间分辨率(图像放大率)和(2)矩形观看窗口的方向。通过阅读准确率(正确读取单词的百分比)和阅读速度(单词/分钟)来衡量表现。在空间分辨率为3.6至6像素/字符之间时达到了最大阅读性能。所有受试者在此范围之外表现均下降。在最佳观看条件下(4.5像素/字符),对于垂直观看窗口,受试者实现了几乎完美的阅读准确率,平均阅读速度为26单词/分钟;对于水平观看窗口,平均阅读速度为34单词/分钟。这些结果表明,从理论上讲,如果“图像放大率”在“最佳范围内”,使用实际的最先进视网膜植入物原型可以恢复一些阅读能力。未来提供更高像素分辨率的视网膜植入物,从而允许更宽的视觉跨度,可能会实现更快的阅读速度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3438/3089939/2dd964c0e668/fnins-05-00057-g001.jpg

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