Studies of a proton bunch phase monitor for range verification in proton therapy

2015 4th International Conference on Advancements in Nuclear Instrumentation Measurement Methods and their Applications (ANIMMA)(2015)

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摘要
A primary subject of the present research in particle therapy is to ensure the precise irradiation of the target volume. The prompt gamma timing (PGT) method provides one possibility for in vivo range verification during the irradiation of patients. Prompt gamma rays with high energies are emitted promptly due to nuclear reactions of protons with tissue. The arrival time of these gammas to the detector reflects the stopping process of the primary protons in tissue and is directly correlated to the range. Due to the time resolution of the detector and the proton bunch time spread, as well as drifts of the bunch phase with respect to the accelerator frequency, timing spectra are smeared out and compromise the accuracy of range information intended for future clinical applications. Nevertheless, counteracting this limitation and recovering range information from the PGT measured spectra, corrections using a bunch phase monitor can be performed. A first prototype of bunch phase monitor was tested at GSI Darmstadt, where measurements of the energy correlation profile of the ion bunches were performed. At the ELBE accelerator at Helmholtz-Zentrum Dresden-Rossendorf (HZDR), set up to provide bremsstrahlung photons in very short pulses, a constant fraction algorithm for the incoming digital signals was evaluated, which is used for optimizing the time resolution. Studies of scattering experiments with different thin targets and detector positions are accomplished at OncoRay Dresden, where a clinical proton beam is available. These experiments allow a basic characterization of the proton bunch structure and the detection yield.
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关键词
proton bunch phase monitor,range verification,proton therapy,target volume irradiation,prompt gamma timing method,vivo range verification,patient irradiation,prompt gamma rays,proton nuclear reactions,gamma arrival time,primary proton stopping process,detector time resolution,proton bunch time spread,bunch phase drifts,accelerator frequency,timing spectra,PGT measured spectra,bunch phase monitor,GSI Darmstadt,energy correlation profile measurements,ion bunches,ELBE accelerator,Helmholtz-Zentrum Dresden-Rossendorf,bremsstrahlung photons,short pulses,constant fraction algorithm,incoming digital signals,time resolution,scattering experiments,thin targets,detector positions,OncoRay Dresden,clinical proton beam,proton bunch structure basic characterization,detection yield
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