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Ultrafast-laser-radiation transfer in heterogeneous tissues with the discrete-ordinates method

机译:离散坐标法在异质组织中的超快激光辐射转移

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Here light propagation and radiation transfer of ultrafast laser pulses in heterogeneous biological tissues are simulated by use of the discrete-ordinates method (DOM). Formulations for solving the time-dependent radiation-transfer equation are deduced for three-dimensional geometries incorporating the Fresnel specularly reflecting boundary condition and characteristics of ultrafast laser pulses. The present method can treat both the incident laser intensity and the scattered radiation intensity from the walls of the targeted tissue as two components, i.e., a diffuse part and a specular part. Reflectivity at the tissue-air interface is calculated by use of Snell's law and the Fresnel equation. The high-order S-10 DOM method is found to be adequate for describing the propagation and transfer of ultrafast laser radiation in heterogeneous tissues. The time-dependent radiation field in the tissue as well as the temporal radiation intensity profiles at the boundaries can be obtained simultaneously. The absolute values of the logarithmic slope of the temporal reflectance and transmittance at various detector positions are found to converge to a constant value in a homogeneous tissue model. With the inclusion of a small inhomogeneity, such a value will change in line with the property of the embedded inhomogeneity. The orientation of heterogeneity of the tissues also substantially affects the radiation intensity at the boundaries. The effect of the Fresnel boundary in the modeling is pronounced. The simulated transmitted signals are broadened and amplified under specularly reflecting boundary condition as compared with those under diffusely reflecting boundary conditions. (C) 2003 Optical Society of America. [References: 29]
机译:在这里,通过使用离散坐标方法(DOM)模拟了超快激光脉冲在异质生物组织中的传播和辐射传输。针对包含菲涅耳镜面反射边界条件和超快激光脉冲特性的三维几何,推导了求解与时间有关的辐射传输方程的公式。本方法可以将入射激光强度和来自目标组织壁的散射辐射强度都视为两个部分,即,散射部分和镜面部分。使用斯涅尔定律和菲涅耳方程计算组织-空气界面的反射率。发现高阶S-10 DOM方法足以描述超快激光辐射在异质组织中的传播和转移。可以同时获得组织中随时间变化的辐射场以及边界处的时间辐射强度曲线。发现在各个检测器位置处的时间反射率和透射率的对数斜率的绝对值在均匀组织模型中收敛为恒定值。通过包含小的不均匀性,该值将根据嵌入的不均匀性的性质而变化。组织的异质性取向也显着影响边界处的辐射强度。菲涅耳边界在建模中的作用是明显的。与在漫反射边界条件下相比,模拟透射信号在镜面反射边界条件下被拓宽和放大。 (C)2003年美国眼镜学会。 [参考:29]

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