The clinical utility of the use of more accurate dose calculation algorithms for radiotherapy treatment planning has not yet been shown for many clinical sites. Although increasingly sophisticated and accurate dose calculation methods such as Monte Carlo and convolution/superposition have over the past decade become increasingly available for clinical study, direct study of the usefulness of the more accurate dose distributions obtained with these algorithms in terms of improving clinical patient outcomes has not been performed. In this study, we will use the clinical outcomes from two conformal therapy treatment studies (parotid-sparing in the head/neck and dose escalation for non-small cell lung cancer) to investigate whether dose distributions calculated with the more accurate Monte Carlo method will improve the correlation between the clinical patient outcomes and the calculated dose distributions. Since both clinical complications and local control for the two clinical studies are well-documented, and the full 3-D patient anatomy and treatment information is available for the patients on those protocols, these data provide a unique opportunity to evaluate the potential for clinical improvements due to improved dose calculations with a retrospective study. To accomplish the proposed goal, we must: (a) perform the necessary algorithmic verification against measurements made in phantoms that closely resemble the relevant clinical geometries, and (b) use the validated and accurate calculational method to re-evaluate the dose distributions delivered to patients treated on the conformal therapy trials performed in the head/neck and lung, and determine if the clinical outcomes (complications and local control) are better correlated with the more accurate calculational results than with the original results. ? ?

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
1R01CA106770-01A1
Application #
6865114
Study Section
Radiation Therapeutics and Biology Study Section (RTB)
Program Officer
Deye, James
Project Start
2005-03-01
Project End
2008-02-28
Budget Start
2005-03-01
Budget End
2006-02-28
Support Year
1
Fiscal Year
2005
Total Cost
$281,644
Indirect Cost
Name
University of Michigan Ann Arbor
Department
Radiation-Diagnostic/Oncology
Type
Schools of Medicine
DUNS #
073133571
City
Ann Arbor
State
MI
Country
United States
Zip Code
48109
Fragoso, Margarida; Wen, Ning; Kumar, Sanath et al. (2010) Dosimetric verification and clinical evaluation of a new commercially available Monte Carlo-based dose algorithm for application in stereotactic body radiation therapy (SBRT) treatment planning. Phys Med Biol 55:4445-64
Fragoso, Margarida; Kawrakow, Iwan; Faddegon, Bruce A et al. (2009) Fast, accurate photon beam accelerator modeling using BEAMnrc: a systematic investigation of efficiency enhancing methods and cross-section data. Med Phys 36:5451-66
Liu, Dezhi; Ajlouni, Munther; Jin, Jian-Yue et al. (2009) Analysis of outcomes in radiation oncology: an integrated computational platform. Med Phys 36:1680-9
Fragoso, Margarida; Pillai, Sushakumari; Solberg, Timothy D et al. (2008) Experimental verification and clinical implementation of a commercial Monte Carlo electron beam dose calculation algorithm. Med Phys 35:1028-38
Li, Haisen S; Chetty, Indrin J; Enke, Charles A et al. (2008) Dosimetric consequences of intrafraction prostate motion. Int J Radiat Oncol Biol Phys 71:801-12
Litzenberg, Dale W; Hadley, Scott W; Tyagi, Neelam et al. (2007) Synchronized dynamic dose reconstruction. Med Phys 34:91-102
Chetty, Indrin J; Curran, Bruce; Cygler, Joanna E et al. (2007) Report of the AAPM Task Group No. 105: Issues associated with clinical implementation of Monte Carlo-based photon and electron external beam treatment planning. Med Phys 34:4818-53
Rosu, Mihaela; Chetty, Indrin J; Tatro, Daniel S et al. (2007) The impact of breathing motion versus heterogeneity effects in lung cancer treatment planning. Med Phys 34:1462-73
Tyagi, Neelam; Moran, Jean M; Litzenberg, Dale W et al. (2007) Experimental verification of a Monte Carlo-based MLC simulation model for IMRT dose calculation. Med Phys 34:651-63
Rosu, Mihaela; Balter, James M; Chetty, Indrin J et al. (2007) How extensive of a 4D dataset is needed to estimate cumulative dose distribution plan evaluation metrics in conformal lung therapy? Med Phys 34:233-45

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