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QUANTIFICATION OF LOCAL CIRCULATION WITH OCT ANGIOGRAPHY

机译:用OCT血管造影定量局部循环

摘要

Impaired intraocular blood flow within vascular beds in the human eye are associated with certain ocular diseases including, for example, glaucoma, diabetic retinopathy and age-related macular degeneration. A reliable method to quantify blood flow in one or more of the various intraocular vascular beds could provide insight into the vascular component of ocular disease pathophysiology. Using ultrahigh-speed optical coherence tomography (OCT), a new 3D angiography algorithm called split-spectrum amplitude-decorrelation angiography (SSADA) was developed for imaging microcirculation within different intraocular regions including, for example, the ocular disc, the temporal ellipse, the peripapillary retina, the peripapillary choroid, the macular retina, the macular choroid, the fovea avascular zone, and the area of non-perfusion. As described herein, a method to quantify SSADA results was developed and used to detect perfusion changes in early stage ocular disease. Associated embodiments relating to methods for quantitatively measuring blood flow at various intraocular vasculature sites, systems for practicing such methods, and use of such methods and systems for diagnosing certain ocular diseases are herein described.
机译:人眼血管床内的眼内血流受损与某些眼疾病有关,包括例如青光眼,糖尿病性视网膜病和与年龄有关的黄斑变性。一种可靠的定量眼内各种血管床中的一种或多种血流的方法可以提供对眼部疾病病理生理的血管成分的了解。使用超高速光学相干断层扫描(OCT),开发了一种新的3D血管造影算法,称为分谱振幅解相关血管造影(SSADA),用于对不同眼内区域内的微循环成像,包括例如眼盘,颞椭圆,视乳头周围视网膜,视乳头周围脉络膜,黄斑视网膜,黄斑脉络膜,中央凹无血管区域和非灌注区域。如本文所述,开发了量化SSADA结果的方法,并用于检测早期眼病的灌注变化。本文描述了与用于定量地测量眼内各种脉管系统部位处的血流的方法,用于实施这种方法的系统以及用于诊断某些眼部疾病的这种方法和系统的使用有关的实施例。

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