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Vascular morphology and blood flow signatures for differential artery-vein analysis in optical coherence tomography of the retina

机译:视网膜光学相干断层扫描中差动动脉静脉分析的血管形态和血流鉴定

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摘要

Differential artery-vein (AV) analysis is essential for retinal study, disease detection, and treatment assessment. This study is to characterize vascular reflectance profiles and blood flow patterns of retinal artery and vein systems in optical coherence tomography (OCT) and OCT angiography (OCTA), and establish them as robust signatures for objective AV classification. A custom designed OCT was employed for three-dimensional (3D) imaging of mouse retina, and corresponding OCTA was reconstructed. Radially resliced OCT B-scans revealed two, i.e. top and bottom, hyperreflective wall boundaries in retinal arteries, while these wall boundaries were absent in OCT of retinal veins. Additional OCTA analysis consistently displayed a layered speckle distribution in the vein, which may indicate the venous laminar flow. These OCT and OCTA differences offer unique signatures for objective AV classification in OCT and OCTA.
机译:差分动脉静脉(AV)分析对于视网膜研究,疾病检测和治疗评估至关重要。该研究是在光学相干断层扫描(OCT)和OCT血管造影(OctA)中的视网膜动脉和静脉系统的血管反射曲线和血流模式,并将其作为目标AV分类的鲁棒签名。用于小鼠视网膜的三维(3D)成像使用定制的OCT,并重建了相应的Octa。径向重塑OCT B-Scans揭示了两种,即顶部和底部,在视网膜动脉中的超射线壁边界,而这些壁边界在视网膜静脉的OCT中不存在。额外的OctA分析始终显示静脉中的分层散斑分布,其可以指示静脉内流动流动。这些OCT和Octa差异为OCT和Octa的客观AV分类提供了独特的签名。

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