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Multi-layer silicone phantoms for the evaluation of quantitative optical techniques in skin imaging

机译:用于评估皮肤成像中定量光学技术的多层硅氧烷幽灵

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With the development of multilayer models for the analysis of quantitative spectroscopic techniques, there is a need to generate controlled and stable phantoms capable of validating these new models specific to the particular instrument performance and/or probe geometry. Direct applications for these multilayer phantoms include characterization or validation of depth penetration., for specific probe geometries or describing layer specific sensitivity of optical instrumentation.We will present a method of producing interchangeable silicone phantoms that vary in thickness from 90 microns up to several millimeters which can be combined to produce multilayered structures to mimic optical properties of physiologic tissues such as skin. The optical properties of these phantoms are verified through inverse addingdoubling methods and the homogeneous distribution of optical properties will be discussed.
机译:随着用于分析定量光谱技术的多层模型,需要产生控制和稳定的幻像,能够验证特定于特定仪器性能和/或探针几何特异性的这些新模型。这些多层幻影的直接应用包括表征或验证深度渗透。对于特定探针几何形状或描述光学仪器的层特异性灵敏度。我们将介绍一种产生可互换硅氧烷模型的方法,其厚度从90微米的厚度变化到几毫米可以组合以产生多层结构以模拟生理组织如皮肤的光学性质。通过逆添加吞噬方法验证这些幽灵的光学性质,并讨论光学性质的均匀分布。

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