Helmholtz Zentrum München GmbH- German Research Center for Environmental Health, Institute of Developmental Genetics, Neuherberg, Germany.
Helmholtz Zentrum München GmbH - German Research Center for Environmental Health, Institute of Experimental Genetics, Neuherberg, Germany.
Exp Eye Res. 2020 Jan;190:107871. doi: 10.1016/j.exer.2019.107871. Epub 2019 Nov 18.
The eye lens displays a variety of phenotypes in the wake of genetic modifications or environmental influences. Therefore, a high-resolution in vivo imaging method for the lens is desirable. Optical coherence tomography (OCT) has become a powerful imaging tool in ophthalmology, especially for retinal imaging in small animal models such as mice. Here, we demonstrate an optimized approach specifically for anterior eye segment imaging with spectral domain OCT (SD-OCT) on several known murine lens cataract mutants. Scheimpflug and histological section images on the same eye were used in parallel to assess the observed pathologies. With SD-OCT images, we obtained detailed information about the different alterations from the anterior to the posterior pole of the lens. This capability makes OCT a valuable high-resolution imaging modality for the anterior eye segment in mouse.
眼晶状体在遗传修饰或环境影响后表现出多种表型。因此,需要一种用于晶状体的高分辨率体内成像方法。光学相干断层扫描(OCT)已成为眼科领域的一种强大成像工具,特别是在小鼠等小动物模型的视网膜成像方面。在这里,我们展示了一种针对具有谱域 OCT(SD-OCT)的前眼部段成像的优化方法,该方法可用于几种已知的小鼠晶状体白内障突变体。Scheimpflug 和组织学切片图像可同时用于评估所观察到的病变。通过 SD-OCT 图像,我们从前极到后极获得了有关晶状体不同改变的详细信息。这种功能使 OCT 成为小鼠前眼部段有价值的高分辨率成像方式。