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MRI/linac integration.

机译:MRI /直线加速器整合。

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PURPOSE/OBJECTIVES: In radiotherapy the healthy tissue involvement still poses serious dose limitations. This results in sub-optimal tumour dose and complications. Daily image guided radiotherapy (IGRT) is the key development in radiation oncology to solve this problem. MRI yields superb soft-tissue visualization and provides several imaging modalities for identification of movements, function and physiology. Integrating MRI functionality with an accelerator can make these capacities available for high precision, real time IGRT. DESIGN AND RESULTS: The system being built at the University Medical Center Utrecht is a 1.5T MRI scanner, with diagnostic imaging functionality and quality, integrated with a 6MV radiotherapy accelerator. The realization of a prototype of this hybrid system is a joint effort between the Radiotherapy Department of the University of Utrecht, the Netherlands, Elekta, Crawley, U.K., and Philips Research, Hamburg, Germany. Basically, the design is a 1.5 T Philips Achieva MRI scanner with a Magnex closed bore magnet surrounded by a single energy (6 MV) Elekta accelerator. Monte Carlo simulations are used to investigate the radiation beam properties of the hybrid system, dosimetry equipment and for the construction of patient specific dose deposition kernels in the presence of a magnetic field. The latter are used to evaluate the IMRT capability of the integrated MRI linac. CONCLUSIONS: A prototype hybrid MRI/linac for on-line MRI guidance of radiotherapy (MRIgRT) is under construction. The aim of the system is to deliver the radiation dose with mm precision based on diagnostic quality MR images.
机译:目的/目的:在放射治疗中,健康组织受累仍然会严重限制剂量。这导致次优的肿瘤剂量和并发症。每日影像引导放射疗法(IGRT)是放射肿瘤学中解决此问题的关键技术。 MRI产生了出色的软组织可视化效果,并提供了多种成像方式来识别运动,功能和生理学。将MRI功能与加速器集成在一起可以使这些功能可用于高精度实时IGRT。设计与结果:该系统在乌得勒支大学医学中心建造,是一台1.5T MRI扫描仪,具有诊断成像功能和高质量,并与6MV放射治疗加速器集成在一起。这种混合系统原型的实现是荷兰乌得勒支大学放射治疗系,英国克劳利的Elekta和德国汉堡的飞利浦研究中心的共同努力。基本上,该设计是1.5 T飞利浦Achieva MRI扫描仪,带有一个Magnex闭孔磁体,被单个能量(6 MV)Elekta加速器包围。蒙特卡罗模拟用于研究混合系统,剂量测定设备的辐射束特性,以及在存在磁场的情况下构造患者特定剂量的沉积核。后者用于评估集成MRI直线加速器的IMRT能力。结论:用于放射治疗在线MRI指导(MRIgRT)的原型混合MRI /直线加速器正在建设中。该系统的目的是基于诊断质量的MR图像以mm的精度提供辐射剂量。

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