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Present Status and Future Developments in Proton Therapy

机译:质子疗法的现状和未来发展

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Within the past few years, interest in proton therapy has significantly increased. This interest has been generated by a number of factors including: 1) the reporting of positive clinical results using proton beams; 2) approval of reimbursement for delivery of proton therapy; 3) the success of hospital-based proton therapy centers; and 4) the availability of modern, integrated proton therapy technology for hospital-based facilities. In the United States, this increased interest has occurred particularly at the level of smaller academic hospitals, community medical centers, and large private practices; however, interest from large academic centers continues to be strong. Particular interest exists regarding smaller and less-expensive proton therapy systems, especially the so-called "single-room" systems. In this paper, the advantages and disadvantages of 1-room proton therapy systems will be discussed. The emphasis on smaller and cheaper proton therapy facilities has also generated interest in new proton-accelerating technologies such as superconducting cyclotrons and synchrocyclotrons, laser acceleration, and dielectric-wall accelerators. Superconducting magnets are also being developed to decrease the size and weight of isocentric gantries. Another important technical development is spot-beam scanning, which offers the ability to deliver intensity-modulated proton treatments (IMPT). IMPT has the potential to provide dose distributions that are superior to those for photon intensity modulation techniques (IMXT) and to improve clinical outcomes for patients undergoing cancer therapy. At the present time, only two facilities - one in Europe and one in the United States - have the ability to deliver IMPT treatments, however, within the next year or two several additional facilities are expected to achieve this capability.
机译:在过去几年中,对质子疗法的兴趣显着增加。这种兴趣是由多种因素产生的,包括:1)使用质子梁报告阳性临床结果; 2)批准偿还质子疗法的偿还; 3)基于医院的质子治疗中心的成功; 4)用于医院设施的现代综合质子疗法技术的可用性。在美国,这种增加的兴趣尤其是在较小的学术医院,社区医疗中心和大型私人实践的水平上发生;但是,大型学术中心的兴趣仍然强劲。关于较小且较低昂贵的质子治疗系统,特别是所谓的“单人间”系统存在特别令人兴趣。在本文中,将讨论1室质子治疗系统的优点和缺点。强调较小和更便宜的质子治疗设施也为新的质子加速技术产生了兴趣,例如超导式回旋上限和同步旋流,激光加速度和介电壁促进剂。还开发了超导磁体以降低仅限细龙杆的尺寸和重量。另一个重要的技术开发是射频扫描,其提供了提供强度调制质子处理的能力(IMPT)。 IMPT有可能提供优于光子强度调制技术(IMXT)的剂量分布,并改善接受癌症治疗患者的临床结果。目前,目前只有两种设施 - 在欧洲和一个在美国 - 有能力提供IMPT治疗的能力,但是,在明年或两两项额外设施中有望实现这一能力。

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