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在1000至1900纳米光谱范围内,通过三层人体皮肤模型对激光传播进行模拟。

Simulation of laser propagation through a three-layer human skin model in the spectral range from 1000 to 1900 nm.

作者信息

Nasouri Babak, Murphy Thomas E, Berberoglu Halil

出版信息

J Biomed Opt. 2014;19(7):075003. doi: 10.1117/1.JBO.19.7.075003.

Abstract

For understanding the mechanisms of low-level laser/light therapy (LLLT), accurate knowledge of light interaction with tissue is necessary. We present a three-dimensional, multilayer reduced-variance Monte Carlo simulation tool for studying light penetration and absorption in human skin. Local profiles of light penetration and volumetric absorption were calculated for uniform as well as Gaussian profile beams with different spreads over the spectral range from 1000 to 1900 nm. The results showed that lasers within this wavelength range could be used to effectively and safely deliver energy to specific skin layers as well as achieve large penetration depths for treating deep tissues, without causing skin damage. In addition, by changing the beam profile from uniform to Gaussian, the local volumetric dosage could increase as much as three times for otherwise similar lasers. We expect that this tool along with the results presented will aid researchers in selecting wavelength and laser power in LLLT.

摘要

为了理解低强度激光/光疗法(LLLT)的作用机制,准确掌握光与组织的相互作用知识是必要的。我们提出了一种三维多层降低方差蒙特卡罗模拟工具,用于研究光在人体皮肤中的穿透和吸收。针对在1000至1900纳米光谱范围内具有不同光斑的均匀光束以及高斯光束,计算了光穿透和体积吸收的局部剖面。结果表明,该波长范围内的激光可用于有效且安全地将能量传递至特定皮肤层,以及实现较大的穿透深度以治疗深部组织,而不会造成皮肤损伤。此外,对于其他条件相似的激光,通过将光束剖面从均匀变为高斯,局部体积剂量可增加多达三倍。我们期望该工具以及所呈现的结果将有助于研究人员在低强度激光疗法中选择波长和激光功率。

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