Appl Opt. 2021 Feb 1;60(4):A173-A178. doi: 10.1364/AO.403532.
We introduce the digital holographic microscope for recording in vivo human eye retinal structures. Current eye imaging technologies cannot provide images with resolutions better than 1 µm within depths of a few hundred micrometers. This can be improved with digital holography, in which a hologram of the eye captured with digital camera contains information about structures over the full depth of the eye. This information can be reconstructed either optically or numerically. Our hologram recording scheme utilizes working principles of the off-axis digital holographic microscope, designed for reflective micro-object investigation. The eye cornea and lens form the microscope objective. We can record in vivo digital holograms of the human eye retina with resolution after reconstruction of at least 1.3 micrometer.
我们介绍了用于记录活体人眼视网膜结构的数字全息显微镜。目前的眼部成像技术无法在几百微米的深度内提供分辨率优于 1 µm 的图像。数字全息术可以改善这一点,其中用数码相机捕获的眼睛全息图包含有关整个眼睛深度的结构信息。该信息可以通过光学或数字方式重建。我们的全息记录方案利用了用于反射微物体研究的离轴数字全息显微镜的工作原理。眼睛的角膜和晶状体构成了显微镜的物镜。我们可以用至少 1.3 µm 的分辨率记录活体人眼视网膜的数字全息图。