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The effect of light losses in double integrating spheres on optical properties estimation

机译:双积分球中的光损耗对光学性质估计的影响

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The double integrating sphere setup (DIS) measures diffuse reflectance, diffuse transmittance and collimated transmittance, from which the optical properties of tissue (the absorption coefficient /spl mu//sub a/, the scattering coefficient /spl mu//sub s/ and the anisotropy of scattering g) are estimated. The effect of light losses in the DIS and optical thickness on optical properties estimation by the inverse adding doubling algorithm (IAD) and uniqueness of measurement have been investigated using a Monte Carlo method. Results were obtained for optical properties in turbid tissues (0.80/spl les/albedo/spl les/0.99, 0.80/spl les/anisotropy/spl les/ 0.99, 1.5/spl les/optical thickness/spl les/7.5) sandwiched between glass slides. At optical thickness=6.0 the loss of light through the glass slides is ranging from 13%/spl plusmn/0.5% (at albedo=0.80) to 15%/spl plusmn/0.5% (at albedo=0.98) of the incident power. The loss of light at the exit port in the transmittance sphere is increasing up to 50% of the incident power at highly forward scattering. These losses result in a dependency on optical thickness of the optical properties estimation by the IAD algorithm. Furthermore, because of these losses, the DIS setup measurement is found to be fundamentally nonunique, when simultaneously measuring the diffuse reflectance, diffuse transmittance and collimated transmittance.
机译:双积分球设置(DIS)可测量漫反射率,漫透射率和准直透射率,从中可以测量组织的光学特性(吸收系数/ spl mu // sub a /,散射系数/ spl mu // sub s /和估计散射g)的各向异性。使用蒙特卡洛方法研究了反向加倍算法(IAD)估计的DIS中的光损耗和光学厚度对光学性能的影响以及测量的唯一性。获得夹在玻璃之间的混浊组织(0.80 / spl les /反照率/ spl les / 0.99、0.80 / spl les /各向异性/ spl les / 0.99、1.5 / spl les /光学厚度/ spl les / 7.5)的光学性质的结果。幻灯片。在光学厚度= 6.0时,通过载玻片的光的损失为入射功率的13%/ spl + / 0.5%(反照率= 0.80)至15%/ spl + / 0.5%(反照率= 0.98)。在高度向前散射时,在透射球体的出口处的光损耗增加到入射功率的50%。这些损失导致对通过IAD算法的光学性质估计的光学厚度的依赖性。此外,由于这些损失,在同时测量漫反射率,漫透射率和准直透射率时,发现DIS设置测量基本上是不唯一的。

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