Kangasniemi Jonna, Mozumder Meghdoot, Pulkkinen Aki, Tarvainen Tanja
University of Eastern Finland, Department of Technical Physics, P.O. Box 1627, 70211 Kuopio, Finland.
Biomed Opt Express. 2024 Jul 30;15(8):4925-4942. doi: 10.1364/BOE.528666. eCollection 2024 Aug 1.
Image reconstruction in optical tomography in the so-called transport regime, where the diffusion approximation is not valid, requires modeling of light transport using the radiative transfer equation. In this work, we approach this problem by utilizing the Monte Carlo method for light transport. In this work, we propose a methodology for absolute imaging of absorption and scattering in this regime utilizing a Monte Carlo method for light transport. The image reconstruction problem is formulated as a minimization problem that is solved using a stochastic Gauss-Newton method. In the construction of the Jacobian matrix for scattering, a perturbation approximation for Monte Carlo is utilized. The approach is evaluated with numerical simulations using an adaptive approach where the number of photon packets is adjusted during the iterations, and with different fixed numbers of photon packets. The simulations show that the Monte Carlo method for light transport can be utilized in the absolute imaging problem of optical tomography and that the absorption and scattering parameters can be estimated simultaneously with good accuracy.
在所谓的输运 regime 中,扩散近似不成立,光学层析成像中的图像重建需要使用辐射传输方程对光传输进行建模。在这项工作中,我们通过利用蒙特卡罗方法进行光传输来解决这个问题。在这项工作中,我们提出了一种利用蒙特卡罗方法进行光传输的方法,用于在该 regime 中对吸收和散射进行绝对成像。图像重建问题被表述为一个最小化问题,使用随机高斯 - 牛顿法求解。在构建散射的雅可比矩阵时,采用了蒙特卡罗的微扰近似。该方法通过使用自适应方法进行数值模拟来评估,其中在迭代过程中调整光子包的数量,以及使用不同固定数量的光子包。模拟结果表明,光传输的蒙特卡罗方法可用于光学层析成像的绝对成像问题,并且吸收和散射参数可以同时以良好的精度进行估计。