Evaluation of deep inspiration breath-hold lung treatment plans with Monte Carlo dose calculation Journal Article


Authors: Yorke, E. D.; Wang, L.; Rosenzweig, K. E.; Mah, D.; Paoli, J. B.; Chui, C. S.
Article Title: Evaluation of deep inspiration breath-hold lung treatment plans with Monte Carlo dose calculation
Abstract: Purpose: To evaluate dosimetry of deep inspiration breath-hold (DIBH) relative to free breathing (FB) for three-dimensional conformal radiation therapy of lung cancer with 6-MV photons and Monte Carlo (MC) dose calculations. Methods and Materials: Static three-dimensional conformal radiation therapy, 6-MV plans, based on DIBH and FB CT images for five non-small-cell lung cancer patients, were generated on a clinical treatment planning system with equivalent path length tissue inhomogeneity correction. Margins of gross to planning target volume were not reduced for DIBH plans. Cord and lung toxicity determined the maximum treatment dose for each plan. Dose distributions were recalculated for the same beams with an MC dose calculation algorithm and electron density distributions derived from the CT images. Results: MC calculations showed decreased target coverage relative to treatment-planning system predictions. Lateral disequilibrium caused more degradation of target coverage for DIBH than for FB (approximately 4% worse than expected for FB vs. 8% for DIBH). However, with DIBH higher treatment doses could be delivered without violating normal tissue constraints, resulting in higher total doses to gross target volume and to >99% of planning target volume. Conclusions: If DIBH enables prescription dose increases exceeding 10%, MC calculations indicate that, despite lateral disequilibrium, higher doses will be delivered to medium-to-large, partly mediastinal gross target volumes, providing that 6-MV photons are used and margins are not reduced. © 2002 Elsevier Science Inc.
Keywords: adult; clinical article; controlled study; aged; middle aged; clinical trial; treatment planning; radiation dose; controlled clinical trial; radiation; tumor volume; lung non small cell cancer; lung neoplasms; lung cancer; radiation injury; oncology; algorithms; prediction; prescription; algorithm; computerized tomography; tumors; dosimetry; spinal cord; lung; radiometry; radiotherapy planning, computer-assisted; radiotherapy, conformal; photons; toxicity; density; breath holding; respiration; computer assisted radiotherapy; radiation dose distribution; photon; dose calculation; tissue inhomogeneity; tissue; monte carlo; monte carlo method; electron; breathing; maximum permissible dose; dose distribution; monte carlo methods; humans; human; male; female; priority journal; article; breath hold; electron density distributions
Journal Title: International Journal of Radiation Oncology, Biology, Physics
Volume: 53
Issue: 4
ISSN: 0360-3016
Publisher: Elsevier Inc.  
Date Published: 2002-07-15
Start Page: 1058
End Page: 1070
Language: English
DOI: 10.1016/s0360-3016(02)02778-5
PUBMED: 12095575
PROVIDER: scopus
DOI/URL:
Notes: Export Date: 14 November 2014 -- Source: Scopus
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MSK Authors
  1. Ellen D Yorke
    429 Yorke
  2. Chen Chui
    144 Chui