Toslak Devrim, Chau Felix, Erol Muhammet Kazim, Liu Changgeng, Chan R V Paul, Son Taeyoon, Yao Xincheng
Department of Bioengineering, University of Illinois at Chicago, Chicago, IL 60607, USA.
Department of Ophthalmology, Antalya Training and Research Hospital, Antalya 07100, Turkey.
Biomed Opt Express. 2019 Dec 5;11(1):68-76. doi: 10.1364/BOE.11.000068. eCollection 2020 Jan 1.
This study is to test the feasibility of using trans-pars-planar illumination for ultra-wide field pediatric fundus photography. Fundus examination of the peripheral retina is essential for clinical management of pediatric eye diseases. However, current pediatric fundus cameras with traditional trans-pupillary illumination provide a limited field of view (FOV), making it difficult to access the peripheral retina adequately for a comprehensive assessment of eye conditions. Here, we report the first demonstration of trans-pars-planar illumination in ultra-wide field pediatric fundus photography. For proof-of-concept validation, all off-the-shelf optical components were selected to construct a lab prototype pediatric camera (PedCam). By freeing the entire pupil for imaging purpose only, the trans-pars-planar illumination enables a 200° FOV PedCam, allowing easy visualization of both the central and peripheral retina up to the ora serrata. A low-cost, easy-to-use ultra-wide field PedCam provides a unique opportunity to foster affordable telemedicine in rural and underserved areas.
本研究旨在测试使用透巩膜平面照明进行超广角儿童眼底摄影的可行性。周边视网膜的眼底检查对于儿童眼病的临床管理至关重要。然而,目前采用传统经瞳孔照明的儿童眼底相机视野有限,难以充分观察周边视网膜以全面评估眼部状况。在此,我们报告了在超广角儿童眼底摄影中首次演示透巩膜平面照明。为进行概念验证,选用了所有现成的光学组件构建了一台实验室原型儿童相机(PedCam)。通过仅将整个瞳孔用于成像目的,透巩膜平面照明使得PedCam能够实现200°的视野,从而能够轻松观察到直至锯齿缘的中央和周边视网膜。一种低成本、易于使用的超广角PedCam为在农村和医疗服务不足地区推广经济实惠的远程医疗提供了独特机会。