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一种新型基于智能手机的、具有远程眼科功能的广域眼底成像设备,带有自动捕获算法。

A Novel, Smartphone-Based, Teleophthalmology-Enabled, Widefield Fundus Imaging Device With an Autocapture Algorithm.

机构信息

Research & Development, Remidio Innovative Solutions Pvt. Ltd., Bangalore, Karnataka, India.

Department of Eye and Retinal Diseases, Diacon Hospital, Bangalore, Karnataka, India.

出版信息

Transl Vis Sci Technol. 2021 Oct 4;10(12):21. doi: 10.1167/tvst.10.12.21.

Abstract

PURPOSE

Widefield imaging can detect signs of retinal pathology extending beyond the posterior pole and is currently moving to the forefront of posterior segment imaging. We report a novel, smartphone-based, telemedicine-enabled, mydriatic, widefield retinal imaging device with autofocus and autocapture capabilities to be used by non-specialist operators.

METHODS

The Remidio Vistaro uses an annular illumination design without cross-polarizers to eliminate Purkinje reflexes. The measured resolution using the US Air Force target test was 64 line pairs (lp)/mm in the center, 57 lp/mm in the middle, and 45 lp/mm in the periphery of a single-shot retinal image. An autocapture algorithm was developed to capture images automatically upon reaching the correct working distance. The field of view (FOV) was validated using both model and real eyes. A pilot study was conducted to objectively assess image quality. The FOVs of montaged images from the Vistaro were compared with regulatory-approved widefield and ultra-widefield devices.

RESULTS

The FOV of the Vistaro was found to be approximately 65° in one shot. Automatic image capture was achieved in 80% of patient examinations within an average of 10 to 15 seconds. Consensus grading of image quality among three graders showed that 91.6% of the images were clinically useful. A two-field montage on the Vistaro was shown to exceed the cumulative FOV of a seven-field Early Treatment Diabetic Retinopathy Study image.

CONCLUSIONS

A novel, smartphone-based, portable, mydriatic, widefield imaging device can view the retina beyond the posterior pole with a FOV of 65° in one shot.

TRANSLATIONAL RELEVANCE

Smartphone-based widefield imaging can be widely used to screen for retinal pathologies beyond the posterior pole.

摘要

目的

广角成像可以检测到超出后极的视网膜病变迹象,目前正在成为后节成像的前沿。我们报告了一种新颖的、基于智能手机的、远程医疗支持的、散瞳的、具有自动对焦和自动捕获功能的宽视野视网膜成像设备,可供非专业操作人员使用。

方法

Remidio Vistaro 使用环形照明设计,没有交叉偏振器,以消除浦肯野反射。使用美国空军靶标测试测量的分辨率在中心为 64 线对/毫米(lp/mm),在中间为 57 lp/mm,在单次拍摄视网膜图像的周边为 45 lp/mm。开发了一种自动捕获算法,以便在达到正确工作距离时自动捕获图像。使用模型眼和真实眼验证了视场(FOV)。进行了一项初步研究以客观评估图像质量。比较了 Vistaro 拼接图像的 FOV 与监管批准的广角和超广角设备。

结果

发现 Vistaro 的 FOV 在一次拍摄中约为 65°。在平均 10 到 15 秒内,80%的患者检查可以自动捕获图像。三位分级员对图像质量的共识分级显示,91.6%的图像具有临床用途。Vistaro 上的两个视场拼接显示超过了七个视场早期糖尿病视网膜病变研究图像的累积 FOV。

结论

一种新颖的、基于智能手机的、便携式、散瞳的、宽视野成像设备可以在一次拍摄中查看后极以外的视网膜,视场为 65°。

翻译

杨雪

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65ce/8525841/5bcd2920642c/tvst-10-12-21-f001.jpg

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