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An Overview of Three Promising Mechanical Optical and Biochemical Engineering Approaches to Improve Selective Photothermolysis of Refractory Port Wine Stains

机译:三种有前途的机械光学和生化工程方法概述以提高耐火葡萄酒的选择性光热分解

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摘要

During the last three decades, several laser systems, ancillary technologies, and treatment modalities have been developed for the treatment of port wine stains (PWSs). However, approximately half of the PWS patient population responds suboptimally to laser treatment. Consequently, novel treatment modalities and therapeutic techniques/strategies are required to improve PWS treatment efficacy. This overview therefore focuses on three distinct experimental approaches for the optimization of PWS laser treatment. The approaches are addressed from the perspective of mechanical engineering (the use of local hypobaric pressure to induce vasodilation in the laser-irradiated dermal microcirculation), optical engineering (laser-speckle imaging of post-treatment flow in laser-treated PWS skin), and biochemical engineering (light- and heat-activatable liposomal drug delivery systems to enhance the extent of post-irradiation vascular occlusion).
机译:在过去的三十年中,已经开发了几种激光系统,辅助技术和处理方式来处理鲜红斑痣(PWS)。但是,大约一半的PWS患者群体对激光治疗的反应欠佳。因此,需要新的治疗方式和治疗技术/策略来改善PWS治疗功效。因此,本概述着重于三种不同的实验方法,以优化PWS激光治疗。从机械工程(使用局部低压压力在激光照射的皮肤微循环中诱导血管舒张),光学工程(激光处理的PWS皮肤中的后处理流的激光散斑成像)和以下方面解决了这些问题:生化工程(可光激活和热激活的脂质体给药系统,以增强照射后血管的阻塞程度)。

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