DocumentCode :
1641880
Title :
Maximum likelihood reconstruction for fluorescence Optical Projection Tomography
Author :
Darrell, A. ; Meyer, H. ; Birk, U. ; Marias, K. ; Brady, M. ; Ripoll, J.
Author_Institution :
ICS-FORTH, Heraklion
fYear :
2008
Firstpage :
1
Lastpage :
6
Abstract :
Tomographic reconstruction of fluorescence optical projection tomography (OPT) data is usually performed using the standard filtered back projection (FBP) algorithm. However, there are several physical aspects of fluorescence OPT that pose major challenges for the FBP algorithm. These include blurring, and the fact that for an isotropically emitting point source (or fluorophore), the power received by an objective aperture decreases with the inverse square of the distance to the source. These two effects are shown to result in qualitative and quantitative inaccuracies in fluorescence OPT reconstructions obtained using standard FBP. A model of image formation is developed which includes the effects of isotropic emission and blurring. The model is used to calculate a probabilistic system matrix for use in the maximum likelihood expectation maximisation algorithm, which leads to reconstructions that are both qualitatively superior and quantitatively correct.
Keywords :
biomedical measurement; biomedical optical imaging; expectation-maximisation algorithm; fluorescence; image reconstruction; medical image processing; optical tomography; probability; FBP; OPT; blurring effects; expectation maximisation algorithm; filtered back projection algorithm; fluorescence optical projection tomography; fluorophore; image formation model; isotropic emission effects; isotropically emitting point source; maximum likelihood reconstruction; probabilistic system matrix; qualitative reconstruction; quantitative reconstruction; Brain modeling; Fluorescence; Gene expression; Humans; Image reconstruction; Mice; Optical filters; Optical imaging; Optimized production technology; Tomography; Iterative Image Reconstruction; Maximum likelihood expectation maximisation; Optical Projection Tomography; fluorescence;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
BioInformatics and BioEngineering, 2008. BIBE 2008. 8th IEEE International Conference on
Conference_Location :
Athens
Print_ISBN :
978-1-4244-2844-1
Electronic_ISBN :
978-1-4244-2845-8
Type :
conf
DOI :
10.1109/BIBE.2008.4696751
Filename :
4696751
Link To Document :
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