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一种新的免散瞳便携式眼底成像方法。

A new approach to non-mydriatic portable fundus imaging.

机构信息

Research and Development, oDocs Eye Care Ltd., Dunedin, New Zealand.

Department of Electrical & Computer Engineering, The University of Auckland, Auckland, New Zealand.

出版信息

Expert Rev Med Devices. 2022 Apr;19(4):303-314. doi: 10.1080/17434440.2022.2070004. Epub 2022 May 12.

Abstract

INTRODUCTION

The present study proposes a new hand-held non-mydriatic fundus camera for retinal imaging. The goal is to design a fundus camera which is equally effective in both clinical and telemedicine scenarios.

AREAS COVERED

A new retinal illumination approach is proposed to address the main dilemma of the optical design, i.e. balancing efficacy with structural simplicity. This is achieved by symmetrical and co-axial placement of multiple illumination sources along the optical pathway. Each illumination source includes a white and a Near Infra-Red (NIR) LED, which are placed adjacent to each other. Hence, the camera can produce a view-finder with NIR illumination without the need for additional beam-splitters and filters.

EXPERT OPINION

The proposed design blends the structural simplicity of the 'off-axis illumination with the wide field of view and uniform illumination of the 'ring' illumination. Moreover, the camera is designed to work with Android-based smartphones, which can easily be mounted and interfaced. The efficacy of the proposed camera is determined by ocular safety analysis and comparative evaluation with a table-top fundus camera. The results convincingly demonstrate the ability of the proposed camera as a primary driver of a wide-scale screening program in both clinical and remote resource constraint environments.

摘要

简介

本研究提出了一种新的手持式免散瞳眼底相机,用于视网膜成像。目标是设计一种在临床和远程医疗环境中同样有效的眼底相机。

涵盖领域

提出了一种新的视网膜照明方法来解决光学设计的主要难题,即平衡效果和结构简单性。这是通过沿着光路对称且同轴地放置多个照明源来实现的。每个照明源包括一个白色和一个近红外 (NIR) LED,它们彼此相邻放置。因此,相机可以在不需要额外的分束器和滤波器的情况下,用近红外照明产生取景器。

专家意见

所提出的设计融合了“离轴照明”的结构简单性和“环”照明的宽视场和均匀照明。此外,该相机设计用于与基于 Android 的智能手机配合使用,这些智能手机可以轻松安装和接口。通过眼安全性分析和与台式眼底相机的比较评估来确定所提出相机的效果。结果令人信服地证明了该相机作为在临床和远程资源受限环境中进行大规模筛查计划的主要驱动因素的能力。

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