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Glare-free retinal imaging using a portable light field fundus camera

机译:使用便携式光场眼底摄像头的无眩光视网膜成像

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摘要

We present the retinal plenoptoscope, a novel light field retinal imaging device designed to overcome many of the problems that limit the use of portable non-mydriatic fundus cameras, including image quality and lack of stereopsis. The design and prototype construction of this device is detailed and the ideal relationship between the eye pupil, system aperture stop and micro-image separation is investigated. A comparison of the theoretical entrance pupil size, multi-view baseline and depth resolution indicates that a higher degree of stereopsis is possible than with stereo fundus cameras. We also show that the effects of corneal backscatter on image quality can be removed through a novel method of glare identification and selective image rendering. This method is then extended to produce glare-free depth maps from densely estimated depth fields, creating representations of retinal topography from a single exposure. These methods are demonstrated on physical models and live human eyes using a prototype device based on a Lytro Illum consumer light field camera. The Retinal Plenoptoscope offers a viable, robust modality for non-mydriatic color and 3-D retinal imaging.
机译:我们提出了视网膜全光镜,一种新颖的光场视网膜成像设备,旨在克服许多限制便携式非散瞳眼底照相机使用的问题,包括图像质量和缺乏立体感。详细介绍了该设备的设计和原型构造,并研究了眼瞳,系统孔径光阑和微图像分离之间的理想关系。理论入瞳尺寸,多视场基线和深度分辨率的比较表明,与立体眼底照相机相比,更高的立体视度是可能的。我们还表明,可以通过一种新的眩光识别和选择性图像渲染方法来消除角膜后向散射对图像质量的影响。然后扩展此方法以从密集估计的深度场生成无眩光的深度图,从而从单次曝光创建视网膜地形图的表示。使用基于Lytro Illum消费者光场相机的原型设备,可以在物理模型和人眼现场演示这些方法。视网膜全视镜为非散瞳色彩和3D视网膜成像提供了一种可行,强大的方法。

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