Yudovsky Dmitry, Durkin Anthony J
Laser Microbeam and Medical Program, Beckman Laser Institute, University of California, Irvine, 1002 Health Sciences Road, Irvine, California 92612, USA.
Appl Opt. 2011 Jul 20;50(21):4237-45. doi: 10.1364/AO.50.004237.
Accurate and rapid estimation of fluence, reflectance, and absorbance in multilayered biological media has been essential in many biophotonics applications that aim to diagnose, cure, or model in vivo tissue. The radiative transfer equation (RTE) rigorously models light transfer in absorbing and scattering media. However, analytical solutions to the RTE are limited even in simple homogeneous or plane media. Monte Carlo simulation has been used extensively to solve the RTE. However, Monte Carlo simulation is computationally intensive and may not be practical for applications that demand real-time results. Instead, the diffusion approximation has been shown to provide accurate estimates of light transport in strongly scattering tissue. The diffusion approximation is a greatly simplified model and produces analytical solutions for the reflectance and absorbance in tissue. However, the diffusion approximation breaks down if tissue is strongly absorbing, which is common in the visible part of the spectrum or in applications that involve darkly pigmented skin and/or high local volumes of blood such as port-wine stain therapy or reconstructive flap monitoring. In these cases, a model of light transfer that can accommodate both strongly and weakly absorbing regimes is required. Here we present a model of light transfer through layered biological media that represents skin with two strongly scattering and one strongly absorbing layer.
在许多旨在对体内组织进行诊断、治疗或建模的生物光子学应用中,准确快速地估计多层生物介质中的光通量、反射率和吸收率至关重要。辐射传输方程(RTE)严格地对光在吸收和散射介质中的传输进行建模。然而,即使在简单的均匀或平面介质中,RTE的解析解也是有限的。蒙特卡罗模拟已被广泛用于求解RTE。然而,蒙特卡罗模拟计算量很大,对于需要实时结果的应用可能并不实用。相反,扩散近似已被证明能为强散射组织中的光传输提供准确估计。扩散近似是一个大大简化的模型,并能给出组织中反射率和吸收率的解析解。然而,如果组织吸收很强,扩散近似就会失效,这在光谱的可见光部分或涉及深色皮肤和/或高局部血量的应用中很常见,如葡萄酒色斑治疗或重建皮瓣监测。在这些情况下,需要一个能够兼顾强吸收和弱吸收情况的光传输模型。在此,我们提出一个通过分层生物介质的光传输模型,该模型用两个强散射层和一个强吸收层来表示皮肤。