Medical Dosimetry
Volume 33, Issue 4 , Pages 293-298, Winter 2008

Dosimetric Effects of Setup Uncertainties on Breast Treatment Delivery

Regional Medical Physics Department and Northern Centre for Cancer Treatment, Newcastle General Hospital, Newcastle Upon Tyne, United Kingdom

Received 4 October 2007; accepted 20 January 2008. published online 06 May 2008.

Abstract 

This study aimed to assess the dosimetric impact of setup errors during the delivery of radiotherapy to the breast, and use this information to make recommendations on intervention tolerances for portal imaging of breast treatments. Translational and rotational setup errors were simulated for 10 recent breast patients using an Oncentra MasterPlan treatment planning system. The effect of these errors on the breast and tumor bed target volumes receiving 95% and 107% of the prescribed dose were assessed. For the majority of patients, shifts of up to 10 mm or a 4° patient rotation about the cranio-caudal axis had no significant effect on the dose distribution. Changes in dosimetry were more likely if the reference plan contained large hot or cold spots. For a typical patient, it is estimated that a shift of 5 mm in any one direction, or a 2° patient rotation would not cause more than a 5% change in the target volume receiving between 95% and 107% of the prescribed dose. If combinations of errors occur, greater dosimetric changes would be expected. It is concluded that individual patient shifts of up to 5 mm or rotations about the cranio-caudal axis of 2° or less are unlikely to affect dose-volume histogram parameters by an amount judged as clinically significant. Setup errors exceeding these values may cause large dosimetric changes for some patients, particularly those with larger hot or cold regions in the dose distribution, and intervention is therefore recommended.

Key Words: Breast radiotherapy, Setup errors, Uncertainty, Dosimetric effects

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PII: S0958-3947(08)00035-6

doi:10.1016/j.meddos.2008.01.003

Medical Dosimetry
Volume 33, Issue 4 , Pages 293-298, Winter 2008