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Retinal fundus imaging with a plenoptic sensor

机译:用全光传感器进行眼底成像

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Vitreoretinal surgery is moving towards 3D visualization of the surgical field. This require acquisition system capable of recording such 3D information. We propose a proof of concept imaging system based on a light-field camera where an array of micro-lenses is placed in front of a conventional sensor. With a single snapshot, a stack of images focused at different depth are produced on the fly, which provides enhanced depth perception for the surgeon. Difficulty in depth localization of features and frequent focus-change during surgery are making current vitreoretinal heads-up surgical imaging systems cumbersome to use. To improve the depth perception and eliminate the need to manually refocus on the instruments during the surgery, we designed and implemented a proof-of-concept ophthalmoscope equipped with a commercial light-field camera. The sensor of our camera is composed of an array of micro-lenses which are projecting an array of overlapped micro-images. We show that with a single light-field snapshot we can digitally refocus between the retina and a tool located in front of the retina or display an extended depth-of-field image where everything is in focus. The design and system performances of the plenoptic fundus camera are detailed. We will conclude by-showing in vivo data recorded with our device.
机译:玻璃体视网膜手术正在朝着手术领域的3D可视化方向发展。这需要能够记录这种3D信息的获取系统。我们提出了一种基于光场相机的概念验证成像系统,其中,微透镜阵列被放置在常规传感器的前面。使用单个快照,可以实时生成一堆聚焦在不同深度的图像,这为外科医生提供了增强的深度感知能力。特征的深度定位困难以及手术期间频繁的焦点改变使得当前的玻璃体视网膜平视手术成像系统难以使用。为了改善深度感知并消除在手术过程中手动重新聚焦器械的需要,我们设计并实施了带有商用光场相机的概念验证检眼镜。我们相机的传感器由一系列微透镜组成,这些微透镜投射出一系列重叠的微图像。我们展示了通过单个光场快照,我们可以在视网膜和位于视网膜前面的工具之间进行数字重新聚焦,或者显示所有焦点都对准的扩展景深图像。详细介绍了全光眼底照相机的设计和系统性能。我们将通过显示用我们的设备记录的体内数据来得出结论。

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