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增强现实深度映射在低视力患者中的深度导航增强。

Enhanced Depth Navigation Through Augmented Reality Depth Mapping in Patients with Low Vision.

机构信息

University of Southern California, USC Ginsburg Institute for Biomedical Therapeutics, Los Angeles, 90033, USA.

Stanford University, Department of Electrical Engineering, Stanford, 94301, USA.

出版信息

Sci Rep. 2019 Aug 2;9(1):11230. doi: 10.1038/s41598-019-47397-w.

Abstract

Patients diagnosed with Retinitis Pigmentosa (RP) show, in the advanced stage of the disease, severely restricted peripheral vision causing poor mobility and decline in quality of life. This vision loss causes difficulty identifying obstacles and their relative distances. Thus, RP patients use mobility aids such as canes to navigate, especially in dark environments. A number of high-tech visual aids using virtual reality (VR) and sensory substitution have been developed to support or supplant traditional visual aids. These have not achieved widespread use because they are difficult to use or block off residual vision. This paper presents a unique depth to high-contrast pseudocolor mapping overlay developed and tested on a Microsoft Hololens 1 as a low vision aid for RP patients. A single-masked and randomized trial of the AR pseudocolor low vision aid to evaluate real world mobility and near obstacle avoidance was conducted consisting of 10 RP subjects. An FDA-validated functional obstacle course and a custom-made grasping setup were used. The use of the AR visual aid reduced collisions by 50% in mobility testing (p = 0.02), and by 70% in grasp testing (p = 0.03). This paper introduces a new technique, the pseudocolor wireframe, and reports the first significant statistics showing improvements for the population of RP patients with mobility and grasp.

摘要

患有色素性视网膜炎(RP)的患者在疾病的晚期表现出严重受限的周边视力,导致行动不便和生活质量下降。这种视力丧失导致难以识别障碍物及其相对距离。因此,RP 患者使用助行器(如手杖)来导航,尤其是在黑暗环境中。已经开发了许多使用虚拟现实(VR)和感觉替代的高科技视觉辅助工具来支持或替代传统的视觉辅助工具。这些工具由于难以使用或遮挡残余视力而未得到广泛应用。本文介绍了一种独特的高对比度假彩色映射叠加技术,该技术在 Microsoft Hololens 1 上进行了开发和测试,作为 RP 患者的低视力辅助工具。对 AR 假彩色低视力辅助工具进行了一项单盲和随机试验,以评估现实世界中的移动能力和近障碍物回避能力,共有 10 名 RP 受试者参加。使用了 FDA 验证的功能障碍课程和定制的抓握设置。在移动测试中,AR 视觉辅助工具的使用将碰撞减少了 50%(p=0.02),在抓握测试中减少了 70%(p=0.03)。本文介绍了一种新技术,即假彩色线框,并报告了第一个具有统计学意义的结果,表明该技术对 RP 患者的移动和抓握能力有改善作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f4c/6677879/ea958b55da6d/41598_2019_47397_Fig1_HTML.jpg

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