DocumentCode :
58373
Title :
Stable and Robust Geometric Self-Calibration for Cone-Beam CT Using Mutual Information
Author :
Muders, Jens ; Hesser, Jurgen
Author_Institution :
Dept. of Radiat. Oncology, Heidelberg Univ., Mannheim, Germany
Volume :
61
Issue :
1
fYear :
2014
fDate :
Feb. 2014
Firstpage :
202
Lastpage :
217
Abstract :
We present a novel geometric calibration method for cone beam computed tomography, which is based on an iterative multiresolution 2-D-3-D image registration framework. Our technique does not require a dedicated calibration phantom or any other specific markers inside the scanned object, so that the geometric parameters can be computed online from the acquired data itself. In contrast to existing registration-based calibration methods, our approach uses the mutual information for maximization of the similarity between the original and the reprojected projections. Furthermore, we incorporated a consistent volume update scheme into our algorithm that supports the registration to accurately retrieve the geometrical misalignment of the scanner. In addition to this, stochastic ray sampling in combination with forward and backprojection operators implemented on the graphics card make the overall runtime comparable to current registration-based approaches. However, we can reach as accurate results as the current phantom-based techniques. Our results will show that our algorithm converges stably to the correct solution, that it is robust against projection noise and that it is independent of the underlying system geometry. It can be applied to circular and to helical trajectories with arbitrary cone angles. Moreover, our studies on simulated and on real data demonstrate that our algorithm can deal with arbitrary imaging objects.
Keywords :
X-ray imaging; calibration; computerised tomography; image registration; iterative methods; medical image processing; optimisation; stochastic processes; arbitrary cone angles; arbitrary imaging objects; backprojection operators; circular trajectories; cone beam computed tomography; cone-beam CT; consistent volume update scheme; forward operators; geometrical misalignment; graphics card; helical trajectories; iterative multiresolution 2D-3D image registration framework; maximization; mutual information; phantom-based techniques; projection noise; robust geometric self-calibration; stable geometric self-calibration; stochastic ray sampling; Calibration; Computed tomography; Detectors; Image reconstruction; Image registration; Optimization; Phantoms; Calibration; X-ray tomography; computed tomography; image reconstruction; image registration; mutual information (MI); nondestructive testing; projection algorithms; reconstruction algorithms; volume measurement;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2013.2293969
Filename :
6710199
Link To Document :
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