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调强质子治疗的射束参数优化与治疗计划

Optimization of beam parameters and treatment planning for intensity modulated proton therapy.

作者信息

Trofimov Alexei, Bortfeld Thomas

机构信息

Department of Radiation Oncology, Massachusetts General Hospital, 30 Fruit Street, Boston, MA 02114, USA.

出版信息

Technol Cancer Res Treat. 2003 Oct;2(5):437-44. doi: 10.1177/153303460300200508.

Abstract

One of the objectives of the ongoing research and development work at the Northeast Proton Therapy Center (NPTC) in Boston is to perform optimized intensity modulated proton therapy (IMPT) treatments. Such treatments may be delivered by magnetically scanning a narrow proton pencil beam across the target volume, while both the scanning speed and the intensity of the beam are modulated. Localization of the proton dose in space allows one to yield dose distributions that are highly conformal to the target volume, thus minimizing the dose delivered to the surrounding healthy tissue. The aim of the current research is to determine technically optimal and clinically relevant specifications for the scanned beam delivery system, which is being developed in collaboration with Ion Beam Applications (IBA); and to create a link between the treatment planning and the beam delivery. IMPT treatment planning is performed for patient cases treated at the NPTC, with KonRad Pro software developed at the German Cancer Research Center (DKFZ). For the IMPT delivery, the proton intensity maps, optimized for discrete pencil beam spots, need to be translated into continuous scanning patterns. At the same time it is necessary to minimize the discrepancy between the planned and delivered doses which may result from such conversion, as well as from the technical limitations of the delivery system. Possibilities have been investigated for improving the proton dose conformity by optimizing the beam and scanning nozzle parameters, and by taking the specifics and limitations of the system into account in the treatment planning stage.

摘要

波士顿东北质子治疗中心(NPTC)正在进行的研发工作的目标之一是进行优化的调强质子治疗(IMPT)。这种治疗可以通过在目标体积上磁扫描窄质子笔形束来实现,同时调制束流的扫描速度和强度。质子剂量在空间中的定位使得能够产生与目标体积高度适形的剂量分布,从而将输送到周围健康组织的剂量降至最低。当前研究的目的是确定与离子束应用公司(IBA)合作开发的扫描束流输送系统的技术最优且临床相关的规格;并在治疗计划和束流输送之间建立联系。使用德国癌症研究中心(DKFZ)开发的KonRad Pro软件,对NPTC治疗的患者病例进行IMPT治疗计划。对于IMPT输送,针对离散笔形束点优化的质子强度图需要转换为连续扫描模式。同时,有必要尽量减少这种转换以及输送系统的技术限制可能导致的计划剂量与输送剂量之间的差异。已经研究了通过优化束流和扫描喷嘴参数,以及在治疗计划阶段考虑系统的特性和限制来提高质子剂量适形性的可能性。

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