TY - JOUR
T1 - Reconstruction algorithms based on l1 -norm and l2 -norm for two imaging models of fluorescence molecular tomography
T2 - A comparative study
AU - Yi, Huangjian
AU - Chen, Duofang
AU - Li, Wei
AU - Zhu, Shouping
AU - Wang, Xiaorui
AU - Liang, Jimin
AU - Tian, Jie
PY - 2013/5
Y1 - 2013/5
N2 - Fluorescence molecular tomography (FMT) is an important imaging technique of optical imaging. The major challenge of the reconstruction method for FMT is the ill-posed and underdetermined nature of the inverse problem. In past years, various regularization methods have been employed for fluorescence target reconstruction. A comparative study between the reconstruction algorithms based on l1-norm and l2-norm for two imaging models of FMT is presented. The first imaging model is adopted by most researchers, where the fluorescent target is of small size to mimic small tissue with fluorescent substance, as demonstrated by the early detection of a tumor. The second model is the reconstruction of distribution of the fluorescent substance in organs, which is essential to drug pharmacokinetics. Apart from numerical experiments, in vivo experiments were conducted on a dual-modality FMT/micro-computed tomography imaging system. The experimental results indicated that l 1-norm regularization is more suitable for reconstructing the small fluorescent target, while l1-norm regularization performs better for the reconstruction of the distribution of fluorescent substance.
AB - Fluorescence molecular tomography (FMT) is an important imaging technique of optical imaging. The major challenge of the reconstruction method for FMT is the ill-posed and underdetermined nature of the inverse problem. In past years, various regularization methods have been employed for fluorescence target reconstruction. A comparative study between the reconstruction algorithms based on l1-norm and l2-norm for two imaging models of FMT is presented. The first imaging model is adopted by most researchers, where the fluorescent target is of small size to mimic small tissue with fluorescent substance, as demonstrated by the early detection of a tumor. The second model is the reconstruction of distribution of the fluorescent substance in organs, which is essential to drug pharmacokinetics. Apart from numerical experiments, in vivo experiments were conducted on a dual-modality FMT/micro-computed tomography imaging system. The experimental results indicated that l 1-norm regularization is more suitable for reconstructing the small fluorescent target, while l1-norm regularization performs better for the reconstruction of the distribution of fluorescent substance.
KW - drug distribution
KW - early detection of tumor
KW - fluorescence molecular tomography
KW - imaging reconstruction
KW - regularization method
UR - https://www.scopus.com/pages/publications/84886783333
U2 - 10.1117/1.JBO.18.5.056013
DO - 10.1117/1.JBO.18.5.056013
M3 - 文章
C2 - 23722452
AN - SCOPUS:84886783333
SN - 1083-3668
VL - 18
JO - Journal of Biomedical Optics
JF - Journal of Biomedical Optics
IS - 5
M1 - 056013
ER -