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A method for incorporating organ motion due to breathing into 3D dose calculations

Medical Physics · 1999 · Vol. 26(5) · pp. 715–720
Anthony E. LujanEdward W. LarsenJames M. BalterRandall K. Ten Haken

Abstract

A method is proposed that incorporates the effects of intratreatment organ motion due to breathing on the dose calculations for the treatment of liver disease. Our method is based on the convolution of a static dose distribution with a probability distribution function (PDF) which describes the nature of the motion. The organ motion due to breathing is assumed here to be one-dimensional (in the superior-inferior direction), and is modeled using a periodic but asymmetric function (more time spent at exhale versus inhale). The dose distribution calculated using convolution-based methods is compared to the static dose distribution using dose difference displays and the effective volume (Veff) of the uninvolved liver, as per a liver dose escalation protocol in use at our institution. The convolution-based calculation is also compared to direct simulations that model individual fractions of a treatment. Analysis shows that incorporation of the organ motion could lead to changes in the dose prescribed for a treatment based on the Veff of the uninvolved liver. Comparison of convolution-based calculations and direct simulation of various worst-case scenarios indicates that a single convolution-based calculation is sufficient to predict the dose distribution for the example treatment plan given.

Advanced Radiotherapy TechniquesRadiation Therapy and DosimetryMedical Imaging Techniques and ApplicationsConvolution (computer science)BreathingDosimetryNuclear medicineMathematicsProbability density functionMedical imagingPhysicsComputer scienceMedicine

MeSH terms

AlgorithmsHumansLiverModels, TheoreticalRadiographyRadiotherapyRadiotherapy Planning, Computer-AssistedRespirationTime Factors

Funding

  • National Institutes of Health
Citations
505
FWCI
14.66
field-weighted impact
References
25
Percentile
99%
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References
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International Journal of Radiation Oncology*Biology*Physics · 1991 · 1,242 citations
Calculation of complication probability factors for non-uniform normal tissue irradiation: The effective volume method gerald
International Journal of Radiation Oncology*Biology*Physics · 1989 · 902 citations
Respiration gated radiotherapy treatment: a technical study
Physics in Medicine and Biology · 1996 · 636 citations
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