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Visualization and Analysis of Human Parafoveal Capillaries Using Motion Contrast Enhancement on Adaptive Optics Scanning Laser Ophthalmoscopy.

机译:在自适应光学扫描激光眼底镜上使用运动对比度增强对人副凹状毛细血管进行可视化和分析。

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摘要

The eye provides a window through which a complete vascular system of arteries, capillaries, and veins can be directly observed. An adaptive optics scanning laser ophthalmoscope (AOSLO), a custom-built optical microscope for the living human eye, can be used to directly acquire videos of blood flow through the smallest capillaries in the eye. However, in the absence of invasive contrast agents, the contrast of blood cells and capillaries is very low. Moreover, it is difficult to determine the locations of all capillaries, and therefore tracking and speed quantification of blood cells is hindered. In human eyes, contrast agents such as fluorescein are routinely used only in the later stages of certain diseases; as with any invasive procedure, there is also a risk for adverse side effects. Instead of injected contrast agents, we used intrinsic signals from moving blood cells to create contrast. By applying custom motion contrast enhancement methods to AOSLO videos, we were able to noninvasively visualize complete capillary networks as well as characterize hemodynamics through the capillaries in the eye. We investigate capillaries in healthy and diseased eyes, and show that the flow dynamics of leukocytes and plasma gaps are heterogeneously distributed, with certain capillaries accounting for a clear majority of leukocyte traffic, and other capillaries primarily featuring plasma gap flow. Such capillaries may serve specific functional roles, such as to prevent inactivated leukocytes from entering exchange capillaries, or to serve as relief valves to minimize flow disruption due to the presence of a leukocyte in a neighboring capillary. In diabetes, we found evidence of capillary remodeling even before conventional clinical methods detected any changes. We establish that motion signals can be used to generate intrinsic contrast for visualization and analysis of capillaries and blood cells. These methods are important for evaluating diseases that affect the microcirculation, such as diabetes.
机译:眼睛提供了一个窗口,通过该窗口可以直接观察到完整的动脉,毛细血管和静脉血管系统。自适应光学扫描激光检眼镜(AOSLO)是用于人眼的定制光学显微镜,可用于直接获取通过眼睛最小毛细血管的血流视频。但是,在没有侵入性造影剂的情况下,血细胞和毛细血管的对比度非常低。此外,难以确定所有毛细血管的位置,因此阻碍了血细胞的追踪和速度定量。在人眼中,通常只在某些疾病的后期使用造影剂,例如荧光素。与任何侵入性程序一样,也存在不良副作用的风险。代替注射造影剂,我们使用了来自移动血细胞的内在信号来产生对比度。通过将自定义运动对比度增强方法应用于AOSLO视频,我们能够无创地观察完整的毛细血管网络,并通过眼中的毛细血管表征血液动力学。我们调查健康和患病的眼睛中的毛细血管,并显示白细胞和血浆间隙的流动动力学是异质分布的,某些毛细血管占白血球流量的绝大部分,而其他毛细血管主要表现为血浆间隙流动。这样的毛细血管可以起特定的功能作用,例如防止失活的白细胞进入交换毛细血管,或用作减压阀以最小化由于相邻毛细血管中白细胞的存在而引起的流动中断。在糖尿病患者中,我们甚至在常规临床方法未发现任何变化之前就发现了毛细血管重塑的证据。我们建立了运动信号可用于生成内在对比度的可视化和分析毛细血管和血细胞。这些方法对于评估影响微循环的疾病(例如糖尿病)非常重要。

著录项

  • 作者

    Tam, Johnny.;

  • 作者单位

    University of California, San Francisco.;

  • 授予单位 University of California, San Francisco.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 281 p.
  • 总页数 281
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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