A parameter optimization algorithm for intensity-modulated radiotherapy prostate treatment planning Journal Article


Authors: Barbiere, J.; Chan, M. F.; Mechalakos, J.; Cann, D.; Schupak, K.; Burman, C.
Article Title: A parameter optimization algorithm for intensity-modulated radiotherapy prostate treatment planning
Abstract: An iterative algorithm has been developed to analytically determine patient specific input parameters for intensity-modulated radiotherapy prostate treatment planning. The algorithm starts with a generic set of inverse planning parameters that include dose and volume constraints for the target and surrounding critical structures. The overlap region between the target volume and the rectum is used to determine the optimized target volume coverage goal. Sequential iterations are performed to vary the numerous parameters individually or in sets while other parameters remain fixed. A coarse grid search is first used to avoid convergence on a local maximum. Linear interpolation is then used to define a region for a fine grid search. Selected parameters are also tested for possible improvements in target coverage. In several representative test cases investigated the coverage of the planning target volume improved with the use of the algorithm while still meeting the clinical acceptability criteria for critical structures. The algorithm avoids time-consuming random trial and error variations that are often associated with difficult cases and also eliminates lengthy user learning curves. The methodology described in this paper can be applied to any treatment planning system that requires the user to select the input optimization parameters.
Keywords: comparative study; radiation dose; methodology; radiotherapy dosage; algorithms; radiation exposure; radiation response; dose-response relationship, radiation; prostatic neoplasms; algorithm; prostate tumor; urinary bladder; radiotherapy planning, computer-assisted; radiotherapy, conformal; computer assisted radiotherapy; rectum; bladder; humans; human; male; article
Journal Title: Journal of Applied Clinical Medical Physics
Volume: 3
Issue: 3
ISSN: 1526-9914
Publisher: American College of Medical Physics  
Date Published: 2002-01-01
Start Page: 227
End Page: 234
Language: English
PUBMED: 12132945
PROVIDER: scopus
DOI: 10.1120/jacmp.v3i3.2567
PMCID: PMC5724592
DOI/URL:
Notes: Export Date: 14 November 2014 -- Source: Scopus
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MSK Authors
  1. Chandra M Burman
    154 Burman
  2. Donald F Cann
    6 Cann
  3. Maria F Chan
    190 Chan
  4. Karen D Schupak
    72 Schupak