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Dynamic contrast optical coherence tomography images transit time and quantifies microvascular plasma volume and flow in the retina and choriocapillaris

机译:动态对比光学相干断层扫描图像传输时间并量化视网膜和脉络膜毛细血管中微血管血浆的体积和流量

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摘要

Despite the prevalence of optical imaging techniques to measure hemodynamics in large retinal vessels, quantitative measurements of retinal capillary and choroidal hemodynamics have traditionally been challenging. Here, a new imaging technique called dynamic contrast optical coherence tomography (DyC-OCT) is applied in the rat eye to study microvascular blood flow in individual retinal and choroidal layers in vivo. DyC-OCT is based on imaging the transit of an intravascular tracer dynamically as it passes through the field-of-view. Hemodynamic parameters can be determined through quantitative analysis of tracer kinetics. In addition to enabling depth-resolved transit time, volume, and flow measurements, the injected tracer also enhances OCT angiograms and enables clear visualization of the choriocapillaris, particularly when combined with a post-processing method for vessel enhancement. DyC-OCT complements conventional OCT angiography through quantification of tracer dynamics, similar to fluorescence angiography, but with the important added benefit of laminar resolution.
机译:尽管使用光学成像技术来测量大型视网膜血管中的血流动力学,但传统上对视网膜毛细血管和脉络膜血流动力学的定量测量一直具有挑战性。在这里,一种称为动态对比​​光学相干断层扫描(DyC-OCT)的新成像技术应用于大鼠眼中,以研究体内单个视网膜和脉络膜层中的微血管血流。 DyC-OCT基于动态描绘血管内示踪剂通过视场的过程。血液动力学参数可通过对示踪动力学进行定量分析来确定。除了能够进行深度解析的传输时间,体积和流量测量外,注入的示踪剂还可以增强OCT血管造影照片,并可以清晰可视化脉络膜毛细血管,特别是与后处理方法结合以增强血管时。 DyC-OCT通过定量示踪动力学来补充传统的OCT血管造影,类似于荧光血管造影,但具有层流分辨率的重要附加好处。

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