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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >NCI support for particle therapy: Past, present, future
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NCI support for particle therapy: Past, present, future

机译:NCI支持粒子治疗:过去、现在、未来

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In light of the rising worldwide interest in particle therapy, and proton therapy specifically in the United States, the National Cancer Institute (NCI) is being asked more often about funding for such research and facilities. Many of the questions imply that NCI is naive to the exciting possibilities inherent in particle therapies, and thus they wish to encourage NCI to initiate and underwrite such programs. In fact, NCI has a long track record of support for the translation of hadrons from the physics laboratory to the therapy clinic by way of technology development and scientific investigations of physical and biological processes as well as clinical outcomes. Early work has included continuous funding since 1961 of proton treatments for more than 15,000 patients and facility construction at the Harvard/Massachusetts General Hospital (MGH) site; treatment of 227 patients with the pi-meson facility at Los Alamos between 1974 and 1981; funding of more than $69M for seven neutron therapy centers between 1971 and 1989; many funded projects in boron neutron capture radiation therapy through the present time; and numerous radiobiology projects over the past 50 y. NCI continues to play an active role in the incorporation of protons into randomized clinical trials through the Children's Oncology Group, Radiation Therapy Oncology Group, and the Program Project Grant (P01), which is co-directed by the MGH and MD Anderson Cancer Center. This has required funding development and implementation of guidelines that enable intercomparison of dosimetry and treatment between facilities. NCI has also funded recent efforts to develop new physical processes for the production of particles such as protons. With regard to the future, while it is true that there are no specific funding opportunity announcements directed to particle therapy research, it is also true that NCI remains open to reviewing any research that is compatible with an established mechanism. However, given the very substantial resources that these facilities currently require along with the highly competitive economic environment that now exists, it is clear that scientific review of such grant applications will look to leverage the scientific pursuits that are the NCI mandate with the reality of the clinical practices, just as is the case for photon radiation research. Such leveraging should be enhanced by the growing opportunities and need for international collaborations. On the other hand, these collaborations are complicated by the fact that these particle therapies are now fully reimbursable modalities, which makes it difficult to separate research (the NCI mission) from clinical practice development. This paper seeks to illuminate these new realities in order to encourage the pursuit and funding of the scientific underpinnings of physical methods, radiobiology, and clinical practice with particle therapy.
机译:根据近年来世界各地粒子治疗,质子治疗在美国,美国国家癌症研究所(NCI)经常被问道这样的研究经费和设施。的问题暗示NCI是天真的令人兴奋的可能性固有的粒子治疗,因此他们希望鼓励NCI启动和承销等项目。NCI有着悠久的记录支持翻译的强子物理实验室的方法治疗诊所技术开发和科学物理和生物的调查过程以及临床结果。工作包括自1961年以来连续资助质子治疗的超过15000人病人和设施建设哈佛大学/马萨诸塞州总医院(MGH)网站;1974年和1981年之间的设施洛斯阿拉莫斯;资金超过69美元的七个中子1971年和1989年之间治疗中心;在硼中子俘获资助项目通过目前放射治疗;大量放射生物学项目在过去的50岁y。NCI继续发挥积极作用将质子随机临床试验通过儿童肿瘤协会,肿瘤放射治疗组和程序项目资助(P01)组合MGH和MD安德森癌症中心。开发和实现所需的资金的指导方针,使相互比较之间的剂量学和治疗设施。最近还资助努力开发新的吗生产的物理过程粒子如质子。未来,确实没有具体融资机会公告针对粒子治疗研究,也是真实,NCI仍然开放审查兼容现有的研究机制。这些设施目前需要的资源高度竞争的经济现在的环境存在,很明显,科学审查的拨款申请利用科学的追求NCI授权与临床的现实实践,同样是光子的情况辐射的研究。日益增强的机会和需求国际合作。一方面,这些合作是复杂的这些粒子治疗现在完全的事实可补偿模式,这使得它很困难独立研究(NCI的任务)临床实践的发展。为了照亮这些新的现实鼓励和资助的追求科学基础的物理方法,放射生物学和临床实践粒子治疗。

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