首页> 外文会议>Conference on Coherence Domain Optical Methods in Biomedical Science and Clinical Applications Ⅵ Jan 21-23, 2002 San Jose, USA >Ultrahigh resolution optical coherence tomography for quantitative topographic mapping of retinal and intraretinal architectural morphology
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Ultrahigh resolution optical coherence tomography for quantitative topographic mapping of retinal and intraretinal architectural morphology

机译:超高分辨率光学相干断层扫描技术,用于定量分析视网膜和视网膜内的建筑形态

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摘要

Quantitative, three-dimensional mapping of retinal architectural morphology was achieved using an ultrahigh resolution ophthalmic OCT system. This OCT system utilizes a broad bandwidth titanium-sapphire laser light source generating bandwidths of up to 300 nm near 800 nm center wavelength. The system enables real-time cross-sectional imaging of the retina with ~3 μm axial resolution. The macula and the papillomacular axis of a normal human subject were systematically mapped using a series of linear scans. Edge detection and segmentation algorithms were developed to quantify retinal and intraretinal thicknesses. Topographic mapping of the total retinal thickness and the total ganglion cell/inner plexiform layer thickness was achieved around the macula. A topographic mapping quantifying the progressive thickening of the nerve fiber layer (NFL) nasally approaching the optic disk was also demonstrated. The ability to create three-dimensional topographic mapping of retinal architectural morphology at ~3 μm axial resolution will be relevant for the diagnosis of many retinal diseases. The topographic quantification of these structures can serve as a powerful tool for developing algorithms and clinical scanning protocols for the screening and staging of ophthalmic diseases such as glaucoma.
机译:使用超高分辨率眼科OCT系统,可对视网膜建筑形态进行三维三维映射。该OCT系统利用宽带钛-蓝宝石激光光源在中心波长800 nm附近产生高达300 nm的带宽。该系统可对轴向分辨率约为3μm的视网膜进行实时截面成像。使用一系列线性扫描系统地绘制了正常人的黄斑和乳头状瘤轴。开发了边缘检测和分割算法以量化视网膜和视网膜内厚度。在黄斑周围实现了总视网膜厚度和神经节细胞/内丛状层总厚度的地形图。还展示了地形图,量化了鼻部接近视盘的神经纤维层(NFL)的逐渐增厚。在〜3μm轴向分辨率下创建视网膜建筑形态的三维地形图的能力将与许多视网膜疾病的诊断有关。这些结构的地形量化可以用作开发用于筛查和分期青光眼等眼科疾病的算法和临床扫描方案的强大工具。

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