» Articles » PMID: 19259141

A Matrix-free Algorithm for Multiple Wavelength Fluorescence Tomography

Overview
Journal Opt Express
Date 2009 Mar 5
PMID 19259141
Citations 11
Authors
Affiliations
Soon will be listed here.
Abstract

In the recent years, there has been an increase in applications of non-contact diffusion optical tomography. Especially when the objective is the recovery of fluorescence targets. The non-contact acquisition systems with the use of a CCD-camera produce much denser sampled boundary data sets than fibre-based systems. When model-based reconstruction methods are used, that rely on the inversion of a derivative operator, the large number of measurements poses a challenge since the explicit formulation and storage of the Jacobian matrix could be in general not feasible. This problem is aggravated further in applications, where measurements at multiple wavelengths are used. We present a matrix-free model-based reconstruction method, that addresses the problems of large data sets and reduces the computational cost and memory requirements for the reconstruction. The idea behind the matrix-free method is that information about the Jacobian matrix could be available through matrix times vector products so that the creation and storage of big matrices can be avoided. We tested the method for multiple wavelength fluorescence tomography with simulated and experimental data from phantom experiments, and we found substantial benefits in computational times and memory requirements.

Citing Articles

Fast and Robust Reconstruction for Fluorescence Molecular Tomography via Regularization.

Zhang H, Geng G, Wang X, Qu X, Hou Y, He X Biomed Res Int. 2017; 2016:5065217.

PMID: 28050563 PMC: 5168556. DOI: 10.1155/2016/5065217.


A Sparsity-Constrained Preconditioned Kaczmarz Reconstruction Method for Fluorescence Molecular Tomography.

Chen D, Liang J, Li Y, Qiu G Biomed Res Int. 2016; 2016:4504161.

PMID: 27999796 PMC: 5143787. DOI: 10.1155/2016/4504161.


Reconstruction for Limited-Projection Fluorescence Molecular Tomography Based on a Double-Mesh Strategy.

Yi H, Zhang X, Peng J, Zhao F, Wang X, Hou Y Biomed Res Int. 2016; 2016:5682851.

PMID: 27830148 PMC: 5086542. DOI: 10.1155/2016/5682851.


Depth-Resolved Multispectral Sub-Surface Imaging Using Multifunctional Upconversion Phosphors with Paramagnetic Properties.

Ovanesyan Z, Mimun L, Kumar G, Yust B, Dannangoda C, Martirosyan K ACS Appl Mater Interfaces. 2015; 7(38):21465-71.

PMID: 26322519 PMC: 4597474. DOI: 10.1021/acsami.5b06491.


Improved sparse reconstruction for fluorescence molecular tomography with L1/2 regularization.

Guo H, Yu J, He X, Hou Y, Dong F, Zhang S Biomed Opt Express. 2015; 6(5):1648-64.

PMID: 26137370 PMC: 4467700. DOI: 10.1364/BOE.6.001648.