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Proton Therapy Delivery and Its Clinical Application in Select Solid Tumor Malignancies
Published on: February 6, 2019
Laser-driven particle accelerators for cancer therapy: a review of state-of-the-art techniques, challenges and
Roumani Alabd1, Daniel Robert Franklin2
1School of Mathematical and Physical Sciences, University of Technology Sydney, Ultimo NSW 2007, Australia.
Abstract:
Charged particle radiation therapy (such as electron, proton and heavy ion therapies) is presently delivered via large linear or circular electromagnetic particle accelerators. There is growing interest in laser plasma accelerators as an alternative source for therapeutic charged particle radiation, including protons, carbon ions, and very high energy electrons. Laser plasma accelerators offer the potential for extremely high dose rates in a very compact physical footprint. While these radiation sources advancing rapidly, there remain many technical challenges to be overcome prior to clinical translation. In this work, we outline the current state of the art in laser-plasma accelerators for proton, carbon ion and very high energy electron radiation therapy, discuss recentin vitroandin vivoexperimental results, and identify the key challenges and opportunities offered by this promising family of technologies.
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