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Influence of tissue absorption and scattering on the depth dependent sensitivity of Raman fiber probes investigated by Monte Carlo simulations

机译:蒙特卡罗模拟研究组织吸收和散射对拉曼纤维探针的深度相关灵敏度的影响

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摘要

We present a Monte Carlo model, which we use to calculate the depth dependent sensitivity or sampling volume of different single fiber and multi-fiber Raman probes. A two-layer skin model is employed to investigate the dependency of the sampling volume on the absorption and reduced scattering coefficients in the near infrared wavelength range (NIR). The shape of the sampling volume is mainly determined by the scattering coefficient and the wavelength dependency of absorption and scattering has only a small effect on the sampling volume of a typical fingerprint spectrum. An increase in the sampling depth in nonmelanoma skin cancer, compared to normal skin, is obtained.
机译:我们提出了一个蒙特卡洛模型,用于计算与深度有关的灵敏度或不同单纤维和多纤维拉曼探针的采样量。使用两层皮肤模型来研究采样量对近红外波长范围(NIR)中吸收系数和减小的散射系数的依赖性。采样体积的形状主要由散射系数决定,吸收和散射的波长相关性对典型指纹光谱的采样体积影响很小。与正常皮肤相比,非黑色素瘤皮肤癌的采样深度有所增加。

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