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Capabilities of Gabor-domain optical coherence microscopy for the assessment of corneal disease

机译:角膜疾病评估的Gabor结构域光学相干显微镜的能力

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摘要

To identify the microstructural modification of the corneal layers during the course of the disease, optical technologies have been pushing the boundary of innovation to achieve cellular resolution of deep layers of the cornea. Gabor-domain optical coherence microscopy (GD-OCM), an optical coherence tomography-based technique that can achieve an isotropic of ~2μm resolution over a volume of 1 mm × 1 mm × 1.2 mm, was developed to investigate the microstructural modifications of corneal layers in four common corneal diseases. Since individual layer visualization without cutting through several layers is challenging due to corneal curvature, a flattening algorithm was developed to remove the global curvature of the endothelial layer and display the full view of the endothelium and Descemet's membrane in single en face images. As a result, GD-OCM revealed the qualitative changes in size and reflectivity of keratocytes in Fuchs endothelial corneal dystrophy (FECD), which varied by the degree of disease. More importantly, elongated shape and hyperactivation characteristics of keratocytes, associated with the early development of guttae, appeared to start in the posterior stroma very early in the disease process and move toward the anterior stroma during disease progression. This work opens a venue into the pathogenesis of FECD. optical coherence tomography; microscopy; ophthalmology; corneal imaging; corneal disease; Fuchs endothelial corneal dystrophy.
机译:为了确定疾病过程中角膜层的微观结构改性,光学技术一直推动创新的边界,实现角膜深层的细胞分辨率。 Gabor-Domain光学相干显微镜(GD-OCM),一种基于光学相干性断层摄影的技术,可以实现在体积为1mm×1mm×1.2mm的体积上达到2μm分辨率的各向同性,以研究角膜的微观结构修改四个常见的角膜疾病中的层。由于在不切割若干层由于角膜曲率而具有若干层的单个层可视化,因此开发了扁平化算法以去除内皮层的全局曲率,并在单个en脸部图像中显示内皮和去皮膜的全视图。结果,GD-OCM揭示了福克斯内皮角膜营养不良(FECD)中角蛋白酶的大小和反射率的定性变化,这在疾病程度变化。更重要的是,与牙龈早期发育相关的角蛋白细胞的细长形状和血管活化特征,似乎在疾病过程中非常早期开始于后基质,并在疾病进展期间朝向前基质移动。这项工作开辟了一个场地进入了FECD的发病机制。光学相干断层扫描;显微镜;眼科;角膜成像;角膜疾病; Fuchs内皮角膜营养不良。

著录项

  • 来源
    《Journal of biomedical optics》 |2019年第4期|046002.1-046002.17|共17页
  • 作者单位

    Indiana University School of Optometry Bloomington Indiana United States;

    Jean Monnet University Laboratory Biology Engineering and Imaging of Corneal Graft Faculty of Medicine Saint-Etienne France;

    Jean Monnet University Laboratory Biology Engineering and Imaging of Corneal Graft Faculty of Medicine Saint-Etienne France Institut Universitaire de France Paris France;

    Eye Care Center Canandaigua New York United States;

    LighTopTech Corp. West Henrietta New York United States;

    University of Rochester The Institute of Optics Rochester New York United States;

    Universite de Lyon Centre National de la Recherche Scientifique Laboratoire Hubert Curien Saint-Etienne France;

    Jean Monnet University Laboratory Biology Engineering and Imaging of Corneal Graft Faculty of Medicine Saint-Etienne France;

    LighTopTech Corp. West Henrietta New York United States University of Rochester The Institute of Optics Rochester New York United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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