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Phase-function corrected diffusion model for diffuse reflectance of a pencil beam obliquely incident on a semi-infinite turbid medium

机译:相位函数校正扩散模型,用于倾斜地在半无限浑浊介质上倾斜地入射的漫射反射率

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Oblique incidence reflectometry (OIR) is an established technique for estimation of tissue optical properties, however, a sensing footprint of a few transport mean-free paths is often needed when diffusion-regime-based algorithms are used. Smaller-footprint probes require improved light-propagation models and inversion schemes for diffuse reflectance close to the point-of-entry but might enable micro-endoscopic form factors for clinical assessments of cancers and pre-cancers. In this paper we extend the phase-function corrected diffusion-theory presented by Vitkin et al. (Nat. Comm 2011) to the case of pencil beams obliquely incident on a semi-infinite turbid medium. The model requires minimal computational resources and offers improved accuracy over more traditional diffusion-theory approximations models when validated against Monte Carlo simulations. The computationally efficient nature of the models may lend themselves to rapid fitting procedures for inverse problems.
机译:倾斜入射反射测量法(OIR)是用于估计组织光学性质的建立技术,然而,当使用扩散制度的算法时,通常需要少数运输意味着路径的感测占地面积。较小的足迹探针需要改进的光传播模型和用于弥漫性反射率的反演方案,靠近入口点,但可以使微内窥镜形式的因子进行癌症和前癌症的临床评估。在本文中,我们扩展了Vitkin等人呈现的相位函数校正扩散理论。 (NAT。通讯2011)到铅梁倾斜入射在半无限浑浊介质上的情况。该模型需要最小的计算资源,并在验证蒙特卡罗模拟时提供更高的传统扩散理论近似模型的准确性。模型的计算有效性可以自行借助逆问题的快速拟合程序。

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