DocumentCode :
2632371
Title :
Respiratory motion estimation from slowly rotating X-ray projections
Author :
Zeng, Rongping ; Fessler, Jeffrey A. ; Balter, James
Author_Institution :
Dept. of Radiat. Oncology, Michigan Univ., MI, USA
fYear :
2004
fDate :
15-18 April 2004
Firstpage :
480
Abstract :
As radiotherapy has become increasingly conformal, geometric uncertainties caused by breathing and organ motion have become an important issue. Accurate motion estimates may lead to improved treatment planning and dose calculation in radiation therapy. However, respiratory motion is difficult to study by conventional X-ray CT imaging since object motion causes inconsistent projection views leading to artifacts in reconstructed images. We propose to estimate the parameters of a nonrigid motion model from a set of projection views of the thorax that are acquired using a slowly rotating cone-beam CT scanner, such as a radiotherapy simulator. We use a conventionally reconstructed 3D thorax image, acquired by breath-hold CT, as a reference volume. We represent respiratory motion using a flexible parametric nonrigid motion model based on B-splines. The motion parameters are estimated by optimizing a regularized cost function that includes the squared error between the measured projection views and the reprojections of the deformed reference image. Preliminary 2D simulation results show that there is good agreement between the estimated motion and the true motion.
Keywords :
biomedical imaging; computerised tomography; parameter estimation; pneumodynamics; radiation therapy; splines (mathematics); B-splines; X-ray CT imaging; breath-hold CT; breathing; dose calculation; flexible parametric nonrigid motion model; image reconstruction; improved treatment planning; organ motion; parameter estimation; radiotherapy; respiratory motion estimation; slowly rotating X-ray projections; slowly rotating cone-beam CT scanner; thorax; Biomedical applications of radiation; Computed tomography; Image reconstruction; Motion estimation; Optical imaging; Parameter estimation; Spline; Thorax; Uncertainty; X-ray imaging;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Imaging: Nano to Macro, 2004. IEEE International Symposium on
Print_ISBN :
0-7803-8388-5
Type :
conf
DOI :
10.1109/ISBI.2004.1398579
Filename :
1398579
Link To Document :
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