Aix-Marseille Université, Ecole Centrale Marseille, CNRS, Institut Fresnel, Domaine Universitaire de Saint-Jérôme, 13397 Marseille Cedex 20, France.
J Biomed Opt. 2010 Sep-Oct;15(5):056006. doi: 10.1117/1.3486544.
Micrometer scale resolution full-field optical coherence tomography (FF-OCT) is developed for imaging human graft corneas. Three-dimensional (3-D) images with ultrahigh resolution (respectively, 1 and 1.5 μm in the axial and transverse directions), comparable to traditional histological sections, are obtained allowing the visualization of the cells and the precise structure of the different layers that compose the tissue. The sensitivity of our device enables imaging the entire thickness of the cornea, even in edematous corneas more than 800 μm thick. Furthermore, we provide tomographic 3-D images of laser incisions inside the tissue at various depths without slicing the studied corneas. The effects of laser ablations can be observed, along various optical sections, directly in the bulk of the sample with high accuracy, providing information on the interface quality and also imaging tiny changes of the tissue structure. FF-OCT appears to be a powerful tool for subcellular imaging of the corneal structure and pathologies on the entire thickness of the tissue as well as interface quality and changes in the collagen structure due to laser incisions on ex vivo human cornea.
用于人眼角膜移植成像的微米级分辨率全场光学相干断层扫描(FF-OCT)技术。获得了超高分辨率(轴向和横向方向的分辨率分别为 1μm 和 1.5μm)的三维(3-D)图像,与传统的组织学切片相当,能够可视化细胞和组成组织的不同层的精确结构。我们的设备灵敏度高,能够对整个角膜进行成像,即使是厚度超过 800μm 的水肿角膜也是如此。此外,我们还可以在不切割研究角膜的情况下,对组织内的激光切口进行断层 3-D 成像,以获取不同深度的信息。可以直接在样本内部观察到沿不同光学切片的激光消融效果,具有高精度,从而提供关于界面质量的信息,还可以对组织结构的微小变化进行成像。FF-OCT 似乎是一种强大的工具,可用于对整个组织厚度的角膜结构和病变进行亚细胞成像,以及对界面质量和由于激光切割导致的胶原结构变化进行成像。