Σφακιανάκης Αλέξανδρος
ΩτοΡινοΛαρυγγολόγος
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Σάββατο 21 Ιανουαρίου 2017

Treating patients with Dynamic Wave Arc: First clinical experience

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Publication date: Available online 20 January 2017
Source:Radiotherapy and Oncology
Author(s): Manuela Burghelea, Dirk Verellen, Jennifer Dhont, Cecilia Hung, Thierry Gevaert, Robbe Van den Begin, Christine Collen, Kenneth Poels, Koen Tournel, Marlies Boussaer, Cyril Jaudet, Truus Reynders, Viorica Simon, Mark de Ridder
Background and purposeDynamic Wave Arc (DWA) is a system-specific noncoplanar arc technique that combines synchronized gantry-ring rotation with D-MLC optimization. This paper presents the clinical workflow, quality assurance program, and reports the geometric and dosimetric results of the first patient cohort treated with DWA.Methods and materialsThe RayStation TPS was clinically integrated on the Vero SBRT platform for DWA treatments. The first 15 patients treated with DWA represent a broad range of treatment sites: breast boost, prostate, lung SBRT and bone metastases, which allowed us to explore the potentials and assess the limitations of the current DWA site-specific template solution. For the DWA verification a variety of QA equipment was used, from 3D diode array to an anthropomorphic end-to-end phantom. The geometric accuracy of each arc was verified with an independent orthogonal fluoroscopy method.ResultsThe average beam-on delivery time was 3min, ranging from 1.22min to 8.82min. All patient QAs passed our institutional clinical criteria of gamma index. For both EBT3 film and Delta4 measurements, DWA planned versus delivered dose distributions presented an average agreement above 97%. An overall mean gantry-ring geometric deviation of −0.03°±0.46° and 0.18°±0.26° was obtained, respectively.ConclusionFor the first time, DWA has been translated into the clinic and used to treat various treatment sides. DWA has been successfully added to the noncoplanar rotational IMRT techniques arsenal, allowing additional flexibility in dose shaping while preserving dosimetrically robust delivery.



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