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Determination of the optical properties of anisotropic biological media using isotropic and anisotropic diffusion models

机译:使用各向同性和各向异性扩散模型测定各向异性生物介质的光学性质

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The anisotropic light propagation in biological tissue is investigated in the steady-state and time domains. Monte Carlo simulations performed for tissue that has anisotropic optical properties show that the steady-state and time-resolved reflectance depends strongly on the measurement direction. We examined the determination of the optical properties using an isotropic diffusion model and found that in the time domain, in contrast to steady-state spatially-resolved reflectance measurements, the obtained absorption coefficient does not depend on the measurement direction and is close to the correct value. We performed measurements of the steady-state and time-resolved reflectance from porcine and bovine tendon which confirmed the theoretical findings. In addition, we compared the results obtained from Monte Carlo simulations with the solutions of the anisotropic diffusion theory for reflectance from semi-infinite media and for transmittance from slabs. In contrast to the literature, we found that the anisotropic diffusion equation is, in general, not a valid approximation to the anisotropic light propagation even in the diffusive regime.
机译:在稳态和时间域中研究了生物组织中的各向异性光繁殖。对具有各向异性光学性质的组织进行的蒙特卡罗模拟表明,稳态和时间分辨反射率在测量方向上强烈取决于强烈。我们检查了使用各向同性扩散模型的光学性质的确定,发现在时域中,与稳态空间分辨反射率测量相比,所获得的吸收系数不依赖于测量方向并接近正确的价值。我们对猪和牛肌腱进行了稳态和时间分辨反射率的测量,证实了理论发现。此外,我们将从蒙特卡罗模拟中获得的结果与来自半无限介质的反射率的各向异性扩散理论的解决方案和从板坯的透射率进行了反射率。与文献相反,我们发现各向异性扩散方程通常是即使在漫射状态下也不是对各向异性光传播的有效近似。

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