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首页> 外文期刊>Lasers in surgery and medicine. >Characterization of Laser‐Resistant Port Wine Stain Blood Vessels Using In Vivo In Vivo Reflectance Confocal Microscopy
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Characterization of Laser‐Resistant Port Wine Stain Blood Vessels Using In Vivo In Vivo Reflectance Confocal Microscopy

机译:描述葡萄酒激光检测的抵抗力染色使用体内体内血管反射共焦显微镜

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Background and Objectives Port wine stain (PWS) is a congenital vascular malformation of the human skin. Laser is the treatment of choice for PWS. Laser‐resistant PWS is one crucial factor accounting for inadequate treatment outcome, which needs to be fully characterized. This study aims to quantitatively characterize the morphology of laser‐resistant PWS blood vessels in the upper papillary dermis using in vivo reflectance confocal microscopy (RCM). Study Design/Materials and Methods A total of 42 PWS subjects receiving laser treatment from August 2016 through July 2018 were enrolled into this study. Thirty‐three subjects had facial PWS; nine had extremity PWS. All subject's PWS received multiplex 585/1,064 nm laser treatment. RCM images were taken before and after treatment. The density, diameter, blood flow, and depth of PWS blood vessels were analyzed. Results We found 44.4% PWS on the extremities (four out of nine subjects) were laser‐resistant, which was significantly higher ( P 0.001) when compared with those PWS on the face (15.2%, 5 out of 33 subjects). The laser‐resistant facial PWS blood vessels had significantly higher blood flow (1.35 ± 0.26 U vs. 0.89 ± 0.22 U, P 0.001), larger blood vessel diameters (109.60 ± 18.24 μm vs. 84.36 ± 24.04 μm, P = 0.033) and were located deeper in the skin (106.01 ± 13.87 μm vs. 87.82 ± 12.57 μm, P 0.001) in the skin when compared with laser‐responsive PWS on the face. The average PWS blood vessel density (17.01 ± 4.63/mm 2 vs. 16.61 ± 4.44/mm 2 , P = 0.857) was not correlated to the laser resistance. Conclusions Laser‐resistant PWS blood vessels had significantly higher blood flow, larger diameters, and were located deeper in the skin. RCM can be a valuable tool for a prognostic evaluation on laser‐resistant lesions before treatment, thereby providing guidance for tailored laser treatment protocols, which may improve the therapeutic outcome. The limitations for this study include relative small sample size and acquisitions of different blood vessels before and after 2 months of treatment. Lasers Surg. Med. ? 2019 Wiley Periodicals, Inc.
机译:背景和目标酒色斑(PWS)先天性血管畸形的人的皮肤。激光检测耐药浆是一个至关重要的因素占不足的治疗效果,需要充分的特点。旨在定量描述PWS血管形态学的激光检测的抵抗力在真皮上使用体内反射共焦显微镜(RCM)。设计/材料和方法共有42浆从8月受试者接受激光治疗2016年到2018年7月被录取到这个研究。肢体PWS。多路复用585/1,064纳米激光治疗。图片之前和之后的治疗。密度、直径、血流量和PWS的深度血管进行了分析。44.4% PWS四肢(四个九主题)激光检测耐药,这是显著提高(P & 脸上与浆(15.2%,5个33的主题)。血管血流量明显高了(1.35±0.26 U和0.89±0.22,P & 大血管直径(109.60±18.24μm和84.36±24.04μm, P = 0.033),位于更深层的皮肤(106.01±13.87±87.82μm vs12.57μm P & 与激光的响应PWS脸上。PWS平均血管密度(17.01±4.63 /毫米2和16.61±4.44 /毫米2,P = 0.857)激光抵抗相关。激光检测耐药浆血管明显高于血液流动,大直径,位于皮肤深层。RCM可以预后的一个有价值的工具评价抗激光所致病变治疗,从而提供指导定制的激光治疗协议,这可能改善治疗结果。在这项研究中包括样本量相对较小和收购不同的血管之前和之后的2个月的治疗。Surg.地中海。

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