采用自适应光学和全视场光学相干断层成像技术实现3D高分辨率成像的第一步

L. Blanco, Marie Blavier, M. Glanc, F. Pouplard, S. Tick, I. Maksimovic, G. Chenegros, L. Mugnier, F. Lacombe, G. Rousset, M. Pâques, J. Le Gargasson, J. Sahel
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引用次数: 0

摘要

我们在这里描述了我们未来的三维眼底相机耦合自适应光学和全视野光学相干断层扫描的两个部分。第一部分是安装在Quinze-Vingts医院的自适应光学洪水成像仪,定期用于健康和病理眼睛。进行后验图像重建,提高最终图像质量和视野。仪器横向分辨率优于2微米。第二部分是全视场光学相干层析成像仪,它已经证明了对非生物样品和非原位视网膜进行一种简单的“四相”图像重建的能力。最终目标是将这两个部分耦合起来,以实现体内视网膜的3D高分辨率映射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First steps toward 3D high resolution imaging using adaptive optics and full-field optical coherence tomography
We describe here two parts of our future 3D fundus camera coupling Adaptive Optics and full-field Optical Coherence Tomography. The first part is an Adaptive Optics flood imager installed at the Quinze-Vingts Hospital, regularly used on healthy and pathological eyes. A posteriori image reconstruction is performed, increasing the final image quality and field of view. The instrument lateral resolution is better than 2 microns. The second part is a full-field Optical Coherence Tomograph, which has demonstrated capability of performing a simple kind of "4 phases" image reconstruction of non biological samples and ex situ retinas. Final aim is to couple both parts in order to achieve 3D high resolution mapping of in vivo retinas.
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