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In-beam PET data characterization with the large area DoPET prototype

机译:使用大面积DoPET原型进行光束内PET数据表征

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摘要

Range verification with in-beam PET techniques is a powerful tool for monitoring the correctness of dose delivery in particle therapy. Among the major limitations of in-beam PET systems are the limited detectors size due to the constrained space in which they can be placed to allow the irradiation, and the necessity of a high read-out modularization, due to high activity rates during the irradiation. In this work we present the data acquired at the CNAO (Centro Nazionale di Adroterapia Oncologica) treatment center in Pavia, Italy, with the new DoPET system, specifically designed to operate in in-beam conditions. The new prototype consists of two planar 15cm x 15cm LYSO-based detectors, read out by 9 PMT detector modules each. In particular, we test the capability of our system to determine particle range in various irradiation conditions. Several plastic phantoms were irradiated at the CNAO treatment centre with protons and carbon ions of various energies. The used dose in treatment plans is 2 Gy and the monitoring feedback is produced in a few minutes after the end of the treatment.
机译:使用光束内PET技术进行范围验证是一种功能强大的工具,可用于监控粒子疗法中剂量输送的正确性。光束内PET系统的主要局限性在于探测器的尺寸受到限制,这是因为它们可以放置在允许辐射的空间内,并且由于辐射期间的高活动率,因此需要高读数模块化。在这项工作中,我们介绍了在意大利帕维亚的CNAO(中枢神经疾病中心)治疗中心获得的数据,该数据中心采用了专门设计用于在束内条件下运行的新型DoPET系统。新原型包括两个基于LYSO的15cm x 15cm平面探测器,每个探测器由9个PMT探测器模块读出。特别是,我们测试了我们的系统在各种照射条件下确定粒子范围的能力。在CNAO治疗中心,用质子和各种能量的碳离子辐照了几个塑料体模。治疗计划中使用的剂量为2 Gy,并且在治疗结束后的几分钟内会产生监视反馈。

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