Organ at risk sparing by non-coplanar prone breast radiotherapy on Halcyon/Ethos linacs utilizing breast couch slewing
Abstract
Abstract Organ at risk (OAR)-dose reductions are needed to minimize radiation toxicity in settings with high OAR-doses, like adjuvant breast and lymph node radiotherapy. Non-coplanar techniques, combined with prone positioning and deep inspiration breath hold (DIBH) techniques, could accomplish this. A planning study was performed in patients requiring left-side adjuvant breast and axillary/periclavicular lymph node irradiation ( n = 8). Simulation was performed in prone crawl position using DIBH. Coplanar and non-coplanar short-arc VMAT plans were compared. Non-coplanar plans featured ≤ 20° angular separation between planes. Feasibility was tested using a CAD model, including a prone crawl breast couch positioned in an up to 20° angle (transverse plane) with the couchtop. Non-coplanar techniques can further reduce radiation exposure. Adding beams in planes with ± 15° to ± 20° angular separation with the transverse plane yielded > 20% mean-dose reductions simultaneously to heart, lungs and esophagus, compared to coplanar plans. Plans with ≤ ± 20° angular separation with the transverse plane proved feasible on linacs lacking couch isocenter rotations. Angular separation of ± 15° seems the best compromise between OAR-sparing and technical challenges. Non-coplanar radiotherapy options yielded superior OAR sparing compared to coplanar techniques in patients requiring adjuvant breast and lymph node irradiation and should be considered for improved radiation toxicity prevention.
Article Details
Authors (13)
Bruno Speleers
Michael E. J. Stouthandel
Vincent Vakaet
Leen Paelinck
Max Schoepen
Annick Van Greveling
Ann Van Esch
Anne-Catherine Wéra
Vincent Remouchamps
Tom Van Hoof
Liv Veldeman
Werner De Gersem
Wilfried De Neve