Fundus imaging using DCRA toward large eyebox

Yuichi Atarashi, Kazuki Otao, Takahito Aoto, Yoichi Ochiai
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Abstract

We propose a novel fundus imaging system using a dihedral corner reflector array (DCRA) that is an optical component to work as a lens but does not have a focal length or an optical axis. A DCRA has a feature that transfers a light source into a plane symmetric point. Conventionally, using this feature, a DCRA has been used to many display applications, such as virtual retinal display and three-dimensional display, in the field of computer graphics. On the other hand, as a sensing application, we use a DCRA for setting a virtual camera in/on an eyeball to capture a fundus. The proposed system has three features; (1) robust to eye movement, (2) wavelength-independent, (3) a simple optical system. In the experiments, the proposed system achieves 8 mm of large eyebox. The proposed system has a possibility to be applied to preventive medicine for households that can be used in daily life.
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采用DCRA对大眼箱进行眼底成像
我们提出了一种新的眼底成像系统,使用二面角反射器阵列(DCRA),它是一个光学元件,作为一个透镜,但没有焦距或光轴。DCRA具有将光源传输到平面对称点的特性。传统上,DCRA利用这一特性已被用于计算机图形学领域的许多显示应用,如虚拟视网膜显示和三维显示。另一方面,作为传感应用,我们使用DCRA在眼球内/上设置虚拟摄像机来捕捉眼底。该系统具有三个特点;(1)对眼球运动具有鲁棒性;(2)与波长无关;(3)光学系统简单。在实验中,该系统实现了8mm的大眼箱。该系统有可能应用于家庭预防医学,并在日常生活中使用。
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