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A method for enhancing digital information displayed to computer users with visual refractive errors via spatial and spectral processing

机译:一种通过空间和光谱处理增强向具有视觉折射误差的计算机用户显示的数字信息的方法

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摘要

This research pursued the conceptualization, implementation, and verification of a system that enhances digital information displayed on an LCD panel to users with visual refractive errors. The target user groups for this system are individuals who have moderate to severe visual aberrations for which conventional means of compensation, such as glasses or contact lenses, does not improve their vision.This research is based on a priori knowledge of the useru27s visual aberration, as measured by a wavefront analyzer. With this information it is possible to generate images that, when displayed to this user, will counteract his/her visual aberration. The method described in this dissertation advances the development of techniques for providing such compensation by integrating spatial information in the image as a means to eliminate some of the shortcomings inherent in using display devices such as monitors or LCD panels. Additionally, physiological considerations are discussed and integrated into the method for providing said compensation.In order to provide a realistic sense of the performance of the methods described, they were tested by mathematical simulation in software, as well as by using a single-lens high resolution CCD camera that models an aberrated eye, and finally with human subjects having various forms of visual aberrations. Experiments were conducted on these systems and the data collected from these experiments was evaluated using statistical analysis.The experimental results revealed that the pre-compensation method resulted in a statistically significant improvement in vision for all of the systems. Although significant, the improvement was not as large as expected for the human subject tests. Further analysis suggest that even under the controlled conditions employed for testing with human subjects, the characterization of the eye may be changing. This would require real-time monitoring of relevant variables (e.g. pupil diameter) and continuous adjustment in the pre-compensation process to yield maximum viewing enhancement.
机译:这项研究致力于系统的概念化,实施和验证,该系统可增强LCD面板上显示给视觉屈光不正的用户的数字信息。该系统的目标用户群是那些具有中度到重度视差的个人,因此,传统的补偿手段(例如眼镜或隐形眼镜)无法改善他们的视力。本研究基于对用户视觉的先验知识像差,由波前分析仪测量。利用该信息,可以生成当显示给该用户时将抵消他/她的视觉像差的图像。本文中描述的方法通过将图像中的空间信息整合为一种手段来消除这种缺陷,从而消除了使用显示器或LCD面板等显示设备所固有的一些缺点。此外,还讨论了生理因素,并将其纳入提供上述补偿的方法中。为了使所描述方法的性能具有真实感,它们通过软件中的数学模拟以及使用单镜头高倍镜进行了测试。分辨率的CCD相机可模拟畸变的眼睛,并最终模拟具有各种形式的视觉像差的人类对象。在这些系统上进行了实验,并使用统计分析评估了从这些实验中收集的数据。实验结果表明,预补偿方法对所有系统的视力都有统计学上的显着改善。尽管效果显着,但改进程度并未达到人体测试的预期。进一步的分析表明,即使在用于人类对象测试的受控条件下,眼睛的特征也可能会发生变化。这将需要对相关变量(例如瞳孔直径)进行实时监控,并在预补偿过程中进行连续调整以产生最大的观看效果。

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    Alonso Miguel Jr.;

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  • 年度 2007
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