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首页> 外文期刊>Lasers in surgery and medicine >A phantom with tissue-like optical properties in the visible and near infrared for use in photomedicine.
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A phantom with tissue-like optical properties in the visible and near infrared for use in photomedicine.

机译:组织如光学特性的幻影可见光和近红外用于光医学。

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BACKGROUND AND OBJECTIVE: Modeling of light transport in tissue requires development of theoretical models and experimental procedures, as well as tissue-simulating phantoms. Our purpose was to develop a phantom that matches the optical characteristics of human skin in the visible and near infrared spectral range. STUDY DESIGN/MATERIALS AND METHODS: The phantom consists of a transparent silicone rubber in which Al(2)O(3) particles and a cosmetic powder are embedded. Layers with thickness as thin as 0.1 mm can be made. The optical properties of Al(2)O(3) particles and cosmetic powder, i.e., total attenuation, absorption and scattering coefficients, and phase function, have been determined in the visible and near infrared spectral range, by using direct and indirect techniques. RESULTS: By varying the concentration of scattering and absorbing particles, tissue-like layers can be produced with predictable optical properties. In particular, mixing at suitable concentration Al(2)O(3) particles and cosmetic powder with the silicone rubber, the optical properties of human skin have been simulated over a range of wavelengths from 400 to 1,000 nm. The comparison between the phantom diffuse reflectance spectrum and that of human skin, averaged over a sample of 260 patients, showed a good agreement. CONCLUSION: The proposed technique allows to produce a stable and reproducible phantom, with accurately predictable optical properties, easy to make and to handle. This phantom is a useful tool for numerous applications involving light interaction with biologic tissue. Copyright 2001 Wiley-Liss, Inc.
机译:背景和目的:建模的光运输组织需要的发展理论模型和实验过程,以及tissue-simulating幻影。目的是开发一个幻相匹配的人类皮肤的光学特性可见光和近红外光谱范围内。设计/材料与方法:幻影由一个透明硅橡胶艾尔(2)O(3)粒子和化妆粉吗是嵌入式。0.1毫米。艾尔(2)O(3)粒子和化妆粉,也就是说,总衰减、吸收和散射系数,和相位函数可见光和近红外的决定光谱范围,通过直接和间接的技术。的粒子散射和吸收,组织如层可以生产可预测的光学特性。混合在适当浓度Al (2) O (3)粒子和化妆品与硅粉橡胶、人体皮肤的光学特性被模拟的波长范围400到1000纳米。幻影漫反射光谱的人类皮肤,平均超过一个样本的260病人,显示良好的协议。该技术允许生产稳定和可再生的幻影,准确可预测的光学特性,容易制作来处理。许多应用程序涉及光的相互作用与生物组织。公司。

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