Soloviev Vadim Y, D'Andrea Cosimo, Valentini Gianluca, Cubeddu Rinaldo, Arridge Simon R
Department of Computer Science, University College London, Gower Street, London WC1E 6BT, UK.
Appl Opt. 2009 Jan 1;48(1):28-36. doi: 10.1364/ao.48.000028.
We present an algorithm for simultaneous reconstruction of optical parameters, quantum yield, and lifetime in turbid media with embedded fluorescent inclusions. This algorithm is designed in the Fourier domain as an iterative solution of a system of differential equations of the Helmholtz type and does not involve full ill-conditioned matrix computations. The approach is based on allowing the unknown optical parameters, quantum yield, and lifetime to depend on the Fourier spectral parameter. The algorithm was applied to a time-gated experimental data set acquired by imaging a highly scattering cylindrical phantom concealing small fluorescent tubes. Relatively accurate reconstruction demonstrates the potential of the method.
我们提出了一种用于同时重建具有嵌入式荧光内含物的混浊介质中的光学参数、量子产率和寿命的算法。该算法在傅里叶域中设计为亥姆霍兹型微分方程组的迭代解,不涉及完全病态矩阵计算。该方法基于允许未知光学参数、量子产率和寿命依赖于傅里叶光谱参数。该算法应用于通过对隐藏小荧光管的高散射圆柱形模型成像获得的时间选通实验数据集。相对准确的重建证明了该方法的潜力。