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用于低视力康复和视力增强的头戴式显示技术。

Head-Mounted Display Technology for Low-Vision Rehabilitation and Vision Enhancement.

作者信息

Ehrlich Joshua R, Ojeda Lauro V, Wicker Donna, Day Sherry, Howson Ashley, Lakshminarayanan Vasudevan, Moroi Sayoko E

机构信息

Department of Ophthalmology and Visual Sciences, University of Michigan, Ann Arbor, Michigan; Institute for Healthcare Policy and Innovation, University of Michigan, Ann Arbor, Michigan; Center for Eye Policy and Innovation, University of Michigan, Ann Arbor, Michigan.

Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan.

出版信息

Am J Ophthalmol. 2017 Apr;176:26-32. doi: 10.1016/j.ajo.2016.12.021. Epub 2016 Dec 31.

Abstract

PURPOSE

To describe the various types of head-mounted display technology, their optical and human-factors considerations, and their potential for use in low-vision rehabilitation and vision enhancement.

DESIGN

Expert perspective.

METHODS

An overview of head-mounted display technology by an interdisciplinary team of experts drawing on key literature in the field.

RESULTS

Head-mounted display technologies can be classified based on their display type and optical design. See-through displays such as retinal projection devices have the greatest potential for use as low-vision aids. Devices vary by their relationship to the user's eyes, field of view, illumination, resolution, color, stereopsis, effect on head motion, and user interface. These optical and human-factors considerations are important when selecting head-mounted displays for specific applications and patient groups.

CONCLUSIONS

Head-mounted display technologies may offer advantages over conventional low-vision aids. Future research should compare head-mounted displays with commonly prescribed low-vision aids to compare their effectiveness in addressing the impairments and rehabilitation goals of diverse patient populations.

摘要

目的

描述各种类型的头戴式显示技术、其光学和人体工程学方面的考量因素,以及它们在低视力康复和视力增强方面的应用潜力。

设计

专家观点。

方法

一个跨学科专家团队基于该领域的关键文献对头戴式显示技术进行综述。

结果

头戴式显示技术可根据其显示类型和光学设计进行分类。诸如视网膜投影设备之类的透视式显示器作为低视力辅助设备具有最大的应用潜力。设备因其与用户眼睛的关系、视野、照明、分辨率、颜色、立体视觉、对头部运动的影响以及用户界面而有所不同。在为特定应用和患者群体选择头戴式显示器时,这些光学和人体工程学方面的考量因素很重要。

结论

头戴式显示技术可能比传统的低视力辅助设备具有优势。未来的研究应将头戴式显示器与常用的低视力辅助设备进行比较,以比较它们在解决不同患者群体的损伤和康复目标方面的有效性。

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