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The physics of proton therapy

Physics in Medicine and Biology · 2015 · Vol. 60(8) · pp. R155–R209
Wayne NewhauserRui Zhang

Abstract

The physics of proton therapy has advanced considerably since it was proposed in 1946. Today analytical equations and numerical simulation methods are available to predict and characterize many aspects of proton therapy. This article reviews the basic aspects of the physics of proton therapy, including proton interaction mechanisms, proton transport calculations, the determination of dose from therapeutic and stray radiations, and shielding design. The article discusses underlying processes as well as selected practical experimental and theoretical methods. We conclude by briefly speculating on possible future areas of research of relevance to the physics of proton therapy.

Radiation Therapy and DosimetryAdvanced Radiotherapy TechniquesRadiation Effects in ElectronicsProton therapyProtonElectromagnetic shieldingPhysicsMedical physicsRelevance (law)Nuclear physicsQuantum mechanics

MeSH terms

HumansProtonsRadiation DosageProton Therapy
Citations
646
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27.98
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250
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References
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International Journal of Radiation Oncology*Biology*Physics · 2006 · 1,100 citations
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Radiology · 1946 · 1,350 citations
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Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment · 2003 · 23,965 citations
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