Title :
Validation of an automatic contour propagation method for lung cancer 4D adaptive radiation therapy
Author :
Peroni, M. ; Spadea, M.F. ; Riboldi, M. ; Baroni, G. ; Chen, G.T.Y. ; Sharp, G.C.
Author_Institution :
Dept. of Bioeng., Politec. di Milano Univ., Milan, Italy
fDate :
June 28 2009-July 1 2009
Abstract :
The objective of this work is to validate a fast and reliable 4D-based adaptive treatment planning procedure for the Radiation Oncology clinic. A non-rigid B-Spline based registration is performed between CT scans at different respiratory phases. Radiotherapy contours drawn on a reference phase are than propagated to the target phase. We present results from two novel validation methods: a validation study using a 4D anthropomorphic computational phantom, and a patient data analysis comparing auto-rater versus inter-rater variability. For the phantom study, the overlap was greater than 90%, while the diameter variation was 5.1% at exhale and 3.4% at inhale. For the patient dataset, pairwise auto-rater Dice coefficient values exceeded inter-rater values for 9 of 15 structures. Though subject to inaccuracies caused by residual motion artifacts, and manual contouring variations, the reliability of the method suggests it could be soon introduced in the clinical practice.
Keywords :
cancer; computerised tomography; data analysis; image registration; lung; medical image processing; phantoms; pneumodynamics; radiation therapy; splines (mathematics); tumours; 4D anthropomorphic computational phantom; CT scan; auto-rater Dice coefficient value; auto-rater variability; automatic contour propagation method; inter-rater variability comparison; lung cancer 4D adaptive radiation therapy; nonrigid B-Spline-based registration; patient data analysis; radiation oncology; residual motion artifact; respiratory phase; Anthropomorphism; Biomedical applications of radiation; Cancer; Computed tomography; Imaging phantoms; Lesions; Lungs; Medical treatment; Oncology; Spline; 4D Treatment Planning; Adaptive Radiation Therapy; Contour Propagation; Deformable Registration; Re-planning;
Conference_Titel :
Biomedical Imaging: From Nano to Macro, 2009. ISBI '09. IEEE International Symposium on
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4244-3931-7
Electronic_ISBN :
1945-7928
DOI :
10.1109/ISBI.2009.5193241