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Reflectance confocal microscopy for the evaluation of acute epidermal wound healing.

机译:反射的共焦显微镜评估急性表皮伤口愈合。

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摘要

The dynamic process of wound healing is routinely evaluated by clinical or histological evaluation. Recently, a number of non-invasive imaging techniques have been evaluated for their clinical applicability in dermatology. Among them, reflectance confocal microscopy (RCM) represents a non-invasive imaging technique that allows the in vivo characterization of the skin at near-histological resolution. The aim of this study was to monitor epidermal wound repair using RCM in a model of tissue damage induced by cryosurgery. For this purpose, contact cryosurgery was performed at -32 degrees C for 10 seconds on the volar forearm of five healthy volunteers. Clinical and RCM evaluations were performed at nine consecutive time points. RCM allowed the visualization of edema formation and blood vessel dilatation immediately after cryosurgery, as well as morphologic features of wound repair, including the formation of finger-like protusions of keratinocytes into the wound bed, the appearance of hairpin-like vessels, and inflammatory cells. This pilot study illustrates that RCM represents a promising technique for quasi-real-time monitoring the kinetics of wound repair non-invasively and over time, thus offering new insights into in vivo processes of cutaneous wound repair and angiogenesis, as well as potential effects of topically applied drugs on the process of tissue repair.
机译:伤口愈合是常规的动态过程评估临床和组织学评价。最近,大量的非侵入性成像技术已经为他们的临床评估皮肤病学的适用性。反射共焦显微镜(RCM)表示一个允许非侵入性成像技术体内皮肤的特征near-histological决议。研究监测表皮伤口修复使用RCM模型引起的组织损伤冷冻手术。在-32摄氏度冷冻手术进行了10五秒足底的前臂健康志愿者。进行连续9次点。允许水肿形成和可视化血管扩张后立即冷冻手术以及形态学的特点伤口修复,包括的形成卫星传回的protusions的角质细胞伤口床,时发针形般的的外观血管和炎症细胞。说明RCM代表一种很有前途的为半实时监测技术伤口修复动力学变化体内,从而提供新的见解皮肤伤口修复的过程血管生成,以及潜在的影响局部应用药物在组织的过程修复。

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