Compton Camera and Prompt Gamma Ray Timing: Two Methods for In Vivo Range Assessment in Proton Therapy

被引:42
作者
Hueso-Gonzalez, Fernando [1 ,2 ,3 ]
Fiedler, Fine [4 ]
Golnik, Christian [2 ,3 ]
Kormoll, Thomas [2 ,3 ]
Pausch, Guntram [2 ,3 ]
Petzoldt, Johannes [2 ,3 ]
Roemer, Katja E. [4 ]
Enghardt, Wolfgang [1 ,2 ,3 ,5 ]
机构
[1] Helmholtz Zentrum Dresden Rossendorf, Inst Radiooncol, D-01314 Dresden, Germany
[2] Tech Univ Dresden, Fac Med, OncoRay Natl Ctr Radiat Res Oncol, D-01062 Dresden, Germany
[3] Tech Univ Dresden, Univ Hosp Carl Gustav Carus, D-01062 Dresden, Germany
[4] Helmholtz Zentrum Dresden Rossendorf, Inst Radiat Phys, D-01314 Dresden, Germany
[5] German Canc Res Ctr, German Canc Consortium DKTK, Heidelberg, Germany
关键词
proton therapy; range verification; in vivo dosimetry; Compton imaging; block detector; scintillation; prompt gamma ray timing; ENERGY RESOLUTION; DESIGN OPTIMIZATION; PENCIL BEAMS; VERIFICATION; CARBON; TARGETS; PATIENT; PHYSICS; SYSTEM;
D O I
10.3389/fonc.2016.00080
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Proton beams are promising means for treating tumors. Such charged particles stop at a defined depth, where the ionization density is maximum. As the dose deposit beyond this distal edge is very low, proton therapy minimizes the damage to normal tissue compared to photon therapy. Nevertheless, inherent range uncertainties cast doubts on the irradiation of tumors close to organs at risk and lead to the application of conservative safety margins. This constrains significantly the potential benefits of protons over photons. In this context, several research groups are developing experimental tools for range verification based on the detection of prompt gammas, a nuclear by-product of the proton irradiation. At OncoRay and Helmholtz-Zentrum Dresden-Rossendorf, detector components have been characterized in realistic radiation environments as a step toward a clinical Compton camera. On the one hand, corresponding experimental methods and results obtained during the ENTERVISION training network are reviewed. On the other hand, a novel method based on timing spectroscopy has been proposed as an alternative to collimated imaging systems. The first tests of the timing method at a clinical proton accelerator are summarized, its applicability in a clinical environment for challenging the current safety margins is assessed, and the factors limiting its precision are discussed.
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页数:13
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