Large deformation three-dimensional image registration in image-guided radiation therapy
- 6 December 2005
- journal article
- Published by IOP Publishing in Physics in Medicine & Biology
- Vol. 50 (24), 5869-5892
- https://doi.org/10.1088/0031-9155/50/24/008
Abstract
In this paper, we present and validate a framework, based on deformable image registration, for automatic processing of serial three-dimensional CT images used in image-guided radiation therapy. A major assumption in deformable image registration has been that, if two images are being registered, every point of one image corresponds appropriately to some point in the other. For intra-treatment images of the prostate, however, this assumption is violated by the variable presence of bowel gas. The framework presented here explicitly extends previous deformable image registration algorithms to accommodate such regions in the image for which no correspondence exists. We show how to use our registration technique as a tool for organ segmentation, and present a statistical analysis of this segmentation method, validating it by comparison with multiple human raters. We also show how the deformable registration technique can be used to determine the dosimetric effect of a given plan in the presence of non-rigid tissue motion. In addition to dose accumulation, we describe a method for estimating the biological effects of tissue motion using a linear-quadratic model. This work is described in the context of a prostate treatment protocol, but it is of general applicability.Keywords
This publication has 42 references indexed in Scilit:
- Tracking the dose distribution in radiation therapy by accounting for variable anatomyPhysics in Medicine & Biology, 2004
- Effects of motion on the total dose distributionSeminars in Radiation Oncology, 2004
- On the Metrics and Euler-Lagrange Equations of Computational AnatomyAnnual Review of Biomedical Engineering, 2002
- Landmark matching via large deformation diffeomorphismsIEEE Transactions on Image Processing, 2000
- Adaptive radiation therapyPhysics in Medicine & Biology, 1997
- Spatial Normalization of 3D Brain Images Using Deformable ModelsJournal of Computer Assisted Tomography, 1996
- Deformable templates using large deformation kinematicsIEEE Transactions on Image Processing, 1996
- Morphometric analysis of white matter lesions in MR images: method and validationIEEE Transactions on Medical Imaging, 1994
- The linear-quadratic formula and progress in fractionated radiotherapyThe British Journal of Radiology, 1989
- Measures of the Amount of Ecologic Association Between SpeciesEcology, 1945