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首页> 外文期刊>Journal of biomedical optics >Determination of the optical properties of anisotropic biological media using an isotropic diffusion model
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Determination of the optical properties of anisotropic biological media using an isotropic diffusion model

机译:使用各向同性扩散模型确定各向异性生物介质的光学性质

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We investigate anisotropic light propagation in biological tissue in steady-state and time domains. Monte Carlo simulations performed for tissue that consists of aligned cylindrical and spherical scatterers show that steady-state and time-resolved reflectance depends strongly on the measurement direction relative to the alignment of the cylinder axis. We examine the determination of optical proper ties using an isotropic diffusion model and find 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 true value. Contrarily, the derived reduced scattering coefficient depends strongly on the measurement direction in both domains. Measurements of the steadystate and time-resolved reflectance from bovine tendon confirm the theoretical findings.
机译:我们研究稳态和时域中生物组织中的各向异性光传播。对由对齐的圆柱和球形散射体组成的组织进行的蒙特卡洛模拟显示,稳态和时间分辨的反射率在很大程度上取决于相对于圆柱轴对齐的测量方向。我们研究了使用各向同性扩散模型确定光学性质的发现,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,并且接近真实值。相反,导出的减小的散射系数在很大程度上取决于两个域中的测量方向。牛腱的稳态和时间分辨反射率的测量证实了理论发现。

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