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Sidestream dark field imaging: the evolution of real-time visualization of cutaneous microcirculation and its potential application in dermatology.

机译:旁流暗场成像:皮肤微循环实时可视化的发展及其在皮肤病学中的潜在应用。

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Technological advances during the last years have enhanced the image quality of the microcirculation. Intravital microscopy (IM) has been considered the "gold standard" for many years, but it can be used mostly in anesthetized animals which is a disadvantage. The nailfold videocapillaroscopy, a non-invasive examination that includes a microscope with an epiillumination system, came afterward, but its major disadvantage is the restricted area available for investigation namely the nailfold capillary bed. The orthogonal polarization spectral (OPS) imaging technique, where reflected light allows the visualization of the microcirculation, was the next non-invasive exam, but it still presents some drawbacks such as suboptimal capillary visualization and image blurring due to red blood cell movements. Excessive probe pressure modifies red blood cell velocity. There is suboptimal imaging of capillaries due to motion-induced image blurring by movements of OPS device, tissue and/or flowing red blood cells. Sidestream dark field (SDF) imaging is the newest tool for microcirculatory research. Illumination is provided by concentrically placed light-emitting diodes to avoid image blurring and to enhance image contrast. It represents a simple and non-invasive imaging technique, with low cost, good portability and high sensitivity that provides fine, well-defined images. In addition, the microcirculation can be studied through laser Doppler flowmetry (LDF) or reflectance-mode confocal-laser-scanning microscopy (RCLM). However, LDF cannot show microcirculatory vessels and high cost of RCLM can be an inconvenience. New applications of SDF technique could include skin microcirculatory evaluation and allow dermatological studies on psoriasis, skin tumors and leprosy.
机译:近年来的技术进步提高了微循环的图像质量。活体显微镜(IM)多年来一直被认为是“金标准”,但它主要用于麻醉动物中,这是一个缺点。后来出现了指甲折叠式毛细血管镜,这是一种非侵入性检查,包括带有落射照明系统的显微镜,但是它的主要缺点是可供研究的受限区域,即指甲折叠式毛细血管床。正交偏振光谱(OPS)成像技术是下一个非侵入性检查,其中反射光可以使微循环可视化,但是它仍然存在一些缺陷,例如毛细血管成像不理想以及由于红细胞运动而导致图像模糊。探头压力过高会改变红细胞速度。由于OPS装置,组织和/或流动的红细胞的运动引起的运动引起的图像模糊,毛细血管的成像效果欠佳。侧流暗场(SDF)成像是微循环研究的最新工具。同心放置的发光二极管提供照明,以避免图像模糊并增强图像对比度。它代表了一种简单且无创的成像技术,具有低成本,良好的便携性和高灵敏度,可提供清晰的图像。此外,可以通过激光多普勒血流仪(LDF)或反射模式共聚焦激光扫描显微镜(RCLM)研究微循环。然而,LDF无法显示微循环血管,RCLM的高成本可能会带来不便。 SDF技术的新应用可能包括皮肤微循环评估,并允许对牛皮癣,皮肤肿瘤和麻风病进行皮肤病学研究。

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