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包含多个圆柱形和弯曲血管的葡萄酒色斑模型中的光分布。

Light distributions in a port wine stain model containing multiple cylindrical and curved blood vessels.

作者信息

Lucassen G W, Verkruysse W, Keijzer M, van Gemert M J

机构信息

Laser Centre, University of Amsterdam, The Netherlands.

出版信息

Lasers Surg Med. 1996;18(4):345-57. doi: 10.1002/(SICI)1096-9101(1996)18:4<345::AID-LSM3>3.0.CO;2-S.

Abstract

BACKGROUND AND OBJECTIVES

Knowledge of the light distribution in skin tissue is important for the understanding, prediction, and improvement of the clinical results in laser treatment of port wine stains (PWS). The objective of this study is to improve modelling of PWS treated by laser using an improved and more realistic PWS model.

STUDY DESIGN/MATERIALS AND METHODS: Light distributions are calculated by the Monte Carlo method for various PWS blood vessel configurations, such as single and multiple vessels oriented horizontally, curved vessels, and "vertically" oriented vessels. Various vessel sizes and wavelengths are used.

RESULTS

Our modelling confirms the concept of selective photothermolysis; 577nm laser light gives maximal deposited energy at the top side of the blood vessels closest to the skin surface and 585nm gives a more uniform energy distribution in the vessel. In the distribution of deposited energy multiple vessels mutually influence each other, because of "shadowing" of diffuse light.

CONCLUSION

Modelling PWS laser treatments with multiple vessels confirms the need for successive treatments of vessels layer by layer. The use of different wavelengths affects the local deposited energy profiles in the blood vessels. It predicts that the significance of 585nm laser light lies in the uniform energy distribution in the vessels rather than in gain in energy deposition with depth. The calculated light distributions provide a more realistic input for modelling thermal damage effects in PWS laser treatment and modelling of the epidermal response in thermal imaging of the PWS blood vessel structure.

摘要

背景与目的

了解皮肤组织中的光分布对于理解、预测和改善葡萄酒色斑(PWS)激光治疗的临床效果至关重要。本研究的目的是使用改进的、更逼真的PWS模型来改进PWS激光治疗的建模。

研究设计/材料与方法:采用蒙特卡罗方法计算各种PWS血管构型(如水平排列的单根和多根血管、弯曲血管以及“垂直”排列的血管)的光分布。使用了各种血管尺寸和波长。

结果

我们的建模证实了选择性光热解的概念;577nm激光在最靠近皮肤表面的血管顶部产生最大沉积能量,而585nm在血管中产生更均匀的能量分布。在沉积能量分布中,由于漫射光的“阴影”作用,多根血管相互影响。

结论

对多根血管的PWS激光治疗建模证实了需要对血管进行逐层连续治疗。使用不同波长会影响血管中的局部沉积能量分布。研究预测585nm激光的意义在于血管中能量分布均匀,而非能量沉积随深度增加。计算得到的光分布为PWS激光治疗中的热损伤效应建模以及PWS血管结构热成像中的表皮反应建模提供了更逼真的输入。

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