Simulating prosthetic vision with disortions for retinal prosthesis design

M. Subramaniam, P. Chundi, A. Muthuraj, E. Margalit, Sylvie Sim
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引用次数: 5

Abstract

Retinal prostheses are used to restore vision to individuals with vision impairments caused by the damaged photoreceptors in their retina. Despite the early successes, designing prostheses that can restore functional vision in general, continues to be a challenging problem due to the large number of design parameters that need to be customized for individual users. Gathering data using real patients in a timely and safe manner is also difficult. To address these problems, a virtual environment for realistically and safely simulating prosthetic vision is described. Besides supporting phosphenized rendering of images at different resolutions to normal users, and eye movement tracking, the environment also supports spatial distortions that are commonly perceived by prostheses users. A procedure to automatically generate such spatial distortions is developed. User corrections if any, are logged and compared with the original distortion values to evaluate distortion perception. Experimental results obtained in using this environment to perform various visual acuity tasks are described.
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视网膜假体设计中模拟假体视觉的畸变
视网膜假体用于恢复因视网膜感光器受损而导致的视力障碍患者的视力。尽管早期取得了成功,但由于需要为个人用户定制大量的设计参数,设计可以恢复一般功能视觉的假肢仍然是一个具有挑战性的问题。以及时和安全的方式收集真实患者的数据也很困难。为了解决这些问题,本文描述了一个真实、安全的模拟假肢视觉的虚拟环境。除了支持不同分辨率的图像磷化渲染和眼动跟踪,该环境还支持假肢用户通常感知的空间扭曲。开发了一种自动生成这种空间畸变的程序。用户修正(如果有的话)将被记录下来,并与原始失真值进行比较,以评估失真感知。本文描述了在这种环境下执行各种视觉灵敏度任务的实验结果。
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