首页> 外文会议>2013 IEEE Nuclear Science Symposium and Medical Imaging Conference >Geant4 studies of the CNAO facility system for Hadrontherapy treatment of uveal melanoma
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Geant4 studies of the CNAO facility system for Hadrontherapy treatment of uveal melanoma

机译:CNAO设施系统治疗葡萄膜黑色素瘤的Geant4研究

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The Italian National Centre of Hadrontherapy for Cancer Treatment (CNAO Centro Nazionale di Adroterapia Oncologica) in Pavia, Italy, has started the treatment of selected cancers with the first patients in late 2011. In the coming months at CNAO plans are to activate a new dedicated treatment line for irradiation of uveal melanomas using the available active beam scan. The beam characteristics and the experimental setup should be tuned in order to reach the necessary precision required for such treatments. Collaboration between CNAO foundation, University of Pavia and INFN has started in 2011 to study the feasibility of these specialised treatments with the ai, of implementing a detailed simulation of the beam line and comparing the obtained simulation results with test measurements at CNAO. The goal is to optimise a new dedicated beam line and to find the best conditions for an optimal patient irradiation. The application studied in this paper describes the Geant4 toolkit simulation of the CNAO setup as well as a modelised human eye with a tumour inside. The Geant4 application could be also used to test possible treatment planning systems. Simulation results illustrate the possibility to adapt the CNAO standard transport beam line by optimizing the position of the isocentre and the addition of some passive elements to better shape the beam for this dedicated study.
机译:位于意大利帕维亚的意大利国家癌症强子疗法国家治疗中心(CNAO Centro Nazionale di Adroterapia Oncologica)已于2011年下半年开始对首批患者进行某些癌症的治疗。在CNAO的未来几个月中,计划启动新的专用治疗方案葡萄膜黑色素瘤放射治疗的治疗线,使用现有的主动束扫描技术。光束特性和实验装置应进行调整,以达到此类处理所需的必要精度。 CNAO基金会,帕维亚大学和INFN之间的合作始于2011年,目的是通过ai研究这些特殊治疗的可行性,对射束线进行详细模拟,并将获得的模拟结果与CNAO的测试结果进行比较。目的是优化一条新的专用光束线,并为最佳的患者照射找到最佳条件。本文研究的应用程序描述了CNAO设置的Geant4工具包仿真以及内部有肿瘤的模型化人眼。 Geant4应用程序还可用于测试可能的治疗计划系统。仿真结果说明了通过优化等中心点的位置并添加一些无源元件来更好地对光束进行整形的方法,从而适应CNAO标准传输光束线的可能性。

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