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具备高动态范围成像能力的便携式广角眼底相机。

Portable widefield fundus camera with high dynamic range imaging capability.

作者信息

Rossi Alfa, Rahimi Mojtaba, Le David, Son Taeyoon, Heiferman Michael J, Chan R V Paul, Yao Xincheng

机构信息

Department of Biomedical Engineering, University of Illinois at Chicago, Chicago, IL 60607, USA.

Department of Ophthalmology and Visual Sciences, University of Illinois at Chicago, Chicago, IL 60612, USA.

出版信息

Biomed Opt Express. 2023 Jan 26;14(2):906-917. doi: 10.1364/BOE.481096. eCollection 2023 Feb 1.

Abstract

Fundus photography is indispensable for the clinical detection and management of eye diseases. Low image contrast and small field of view (FOV) are common limitations of conventional fundus photography, making it difficult to detect subtle abnormalities at the early stages of eye diseases. Further improvements in image contrast and FOV coverage are important for early disease detection and reliable treatment assessment. We report here a portable, wide FOV fundus camera with high dynamic range (HDR) imaging capability. Miniaturized indirect ophthalmoscopy illumination was employed to achieve the portable design for nonmydriatic, widefield fundus photography. Orthogonal polarization control was used to eliminate illumination reflectance artifacts. With independent power controls, three fundus images were sequentially acquired and fused to achieve HDR function for local image contrast enhancement. A 101° eye-angle (67° visual-angle) snapshot FOV was achieved for nonmydriatic fundus photography. The effective FOV was readily expanded up to 190° eye-angle (134° visual-angle) with the aid of a fixation target without the need for pharmacologic pupillary dilation. The effectiveness of HDR imaging was validated with both normal healthy and pathologic eyes, compared to a conventional fundus camera.

摘要

眼底摄影对于眼部疾病的临床检测和管理至关重要。低图像对比度和小视野(FOV)是传统眼底摄影常见的局限性,这使得在眼部疾病早期难以检测到细微异常。进一步提高图像对比度和FOV覆盖范围对于早期疾病检测和可靠的治疗评估非常重要。我们在此报告一种具有高动态范围(HDR)成像能力的便携式宽FOV眼底相机。采用小型化间接检眼镜照明实现了用于非散瞳宽视野眼底摄影的便携式设计。使用正交偏振控制来消除照明反射伪影。通过独立的功率控制,依次采集并融合三张眼底图像以实现HDR功能,用于局部图像对比度增强。对于非散瞳眼底摄影,实现了101°眼视角(67°视视角)的快照FOV。借助固定目标,有效FOV可轻松扩展至190°眼视角(134°视视角),无需药物散瞳。与传统眼底相机相比,在正常健康眼睛和患病眼睛中均验证了HDR成像的有效性。

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