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IMAGE ANALYSIS OF HUMAN NAILFOLD CAPILLARY WITH HIGH SPEED DIGITAL VIDEO CAPILLAROSCOPY

机译:高速数字视频毛细管镜检查人钉毛细管的图像分析

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Diagnoses of skin diseases are considerably difficult tasks due to the multiply-folded factors. Nailfold capillaroscopy has been developed to diagnosis microvascular disturbances mainly in connective tissue diseases, including systemic sclerosis, dermatomyositis, systemic lupus erythematosus, and Raynaud's phenomenon. Capillaroscopy is non-invasive, easy to use, low cost and suitable for observation of these typical phenomena. We improved conventional capillaroscopy by constructing "high speed digital video capillaroscopy", by integrating high speed digital video camera, deep-focus zoom lens, appropriate light source and light collecting adaptor. High speed digital video camera enabled us to observe the individual red blood cell in human nailfold capillary in vivo. The light collecting adaptor is effective for preventing skin from excessive light exposure, which causes serious damage. The first objective of this study is to extract the shape of nailfold capillary quantitatively by using binarization and the level-set method. By using the level-set method, the function, which distinguishes outside from inside of the capillary and also evaluates radius distribution along the capillary center line, is calculated. Based on this mathematical description of capillary shape, more rigorous definition of the capillary red blood cell velocity than the conventional method is obtained. The second objective of this study is to propose the innovative measurement method of red blood cell velocity in nailfold capillary. As plasma gaps show high brightness we trace them and estimate the velocities of blood cells on the center line of capillary. The last objective of this study is to observe the behavior of red blood cell. We evaluate the movement of individual red blood cell, not only in the axial direction but also the lateral direction. We analyze the series of images of red blood cells in capillary and discuss their behavior.
机译:由于倍增因素,皮肤病的诊断是相当困难的任务。已经开发了甲状腺毛细管镜,主要用于诊断微血管紊乱,主要是结缔组织疾病,包括系统性硬化症,皮肤病,全身性狼疮红斑狼疮和雷诺的现象。毛细管镜检查是无侵入性的,易于使用,成本低,适用于这些典型现象。通过构建“高速数字视频毛细管镜检查”,通过集成高速数字摄像机,深焦距缩放镜头,适当的光源和光收集适配器来改善常规毛细管镜检查。高速数字视频摄像机使我们能够在体内观察人类钉子毛细血管中的单个红细胞。光收集适配器对防止皮肤过度曝光有效,这导致严重损坏。本研究的第一个目的是通过使用二值化和水平设定方法定量地提取钉毛细管的形状。通过使用水平集方法,计算毛细管内部区分外部的功能,并且还计算沿毛细管中心线评估半径分布。基于该毛细管形状的数学描述,获得比常规方法更严格的毛细血管红细胞速度的定义。本研究的第二个目的是提出钉子毛细管中红细胞速度的创新测量方法。随着等离子体间隙显示出高亮度,我们追踪它们并估计毛细管中心线上的血细胞速度。本研究的最后一个目的是观察红细胞的行为。我们评估单个红细胞的运动,不仅沿轴向,而且还评估了单个红细胞的运动。我们分析毛细血管中红细胞的一系列图像,并讨论其行为。

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