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A linear gradient line source facilitates the use of diffusion models with high order approximation for efficient, accurate turbid sample optical properties recovery

机译:线性梯度线源有助于使用高阶近似的扩散模型,以实现有效,准确的混浊样品光学性能恢复

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In this paper, we demonstrate that a scanning MEMS mirror can be employed to create a linear gradient line source that is equivalent to a planar source. This light source setup facilitates the use of diffusion models of increased orders of approximation having closed form solution, and thus enhance the efficiency and accuracy in sample optical properties recovery. In addition, compared with a regular planar light source, the linear gradient line source occupies much less source area and has an elevated measurement efficiency. We employed a δ-P1 diffusion equation with a closed form solution and carried out a phantom study to understand the performance of this new method in determining the absorption and scattering properties of turbid samples. Moreover, our Monte Carlo simulation results indicated that this geometry had probing depths comparable to those of the conventional diffuse reflectance measurement geometry with a source-detector separation of 3 mm. We expect that this new source setup would facilitate the investigating of superficial volumes of turbid samples in the wavelength regions where tissue absorption coefficients are comparable to scattering coefficients.
机译:在本文中,我们演示了可以使用扫描MEMS反射镜来创建等效于平面光源的线性梯度线光源。这种光源设置有利于使用具有封闭形式解的近似增加阶数的扩散模型,从而提高了样品光学特性恢复的效率和准确性。另外,与常规平面光源相比,线性梯度线光源占据的光源面积小得多,并且测量效率提高。我们采用具有封闭形式解的δ-P1扩散方程,并进行了幻像研究,以了解这种新方法在确定混浊样品的吸收和散射特性方面的性能。此外,我们的蒙特卡洛模拟结果表明,这种几何形状的探测深度可与常规漫反射测量几何形状的探测深度相媲美,其中源-探测器的间距为3 mm。我们希望这种新的光源设置将有助于在组织吸收系数与散射系数可比的波长区域中研究浊度样品的表面体积。

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