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Dosimetric Optimization and Commissioning of a High Field Inline MRI-Linac

机译:高场inline mri-linac的剂量测量和调试

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Purpose: Unique characteristics of MRI-linac systems and mutual interactions between their components pose specific challenges for their commissioning and quality assurance. The Australian MRI-linac is a prototype system which explores the inline orientation, with radiation beam parallel to the main magnetic field. The aim of this work was to commission the radiation-related aspects of this system for its application in clinical treatments. Methods: Physical alignment of the radiation beam to the magnetic field was fine-tuned and magnetic shielding of the radiation head was designed to achieve optimal beam characteristics. These steps were guided by investigative measurements of the beam properties. Subsequently, machine performance was benchmarked against the requirements of the IEC60976/77 standards. Finally, the geometric and dosimetric data was acquired, following the AAPM Task Group 106 recommendations, to characterize the beam for modeling in the treatment planning system and with Monte Carlo simulations. The magnetic field effects on the dose deposition and on the detector response have been taken into account and issues specific to the inline design have been highlighted. Results: Alignment of the radiation beam axis and the imaging isocentre within 2 mm tolerance was obtained. The system was commissioned at two source-to-isocentre distances (SIDs): 2.4 and 1.8 m. Reproducibility and proportionality of the dose monitoring system met IEC criteria at the larger SID but slightly exceeded it at the shorter SID. Profile symmetry remained under 103% for the fields up to ~34 × 34 and 21 × 21 cm ~(2) at the larger and shorter SID, respectively. No penumbra asymmetry, characteristic for transverse systems, was observed. The electron focusing effect, which results in high entrance doses on central axis, was quantified and methods to minimize it have been investigated. Conclusion: Methods were developed and employed to investigate and quantify the dosimetric properties of an inline MRI-Linac system. The Australian MRI-linac system has been fine-tuned in terms of beam properties and commissioned, constituting a key step toward the application of inline MRI-linacs for patient treatments.
机译:目的:MRI-LINAC系统的独特特征和其组件之间的相互互动构成了他们的调试和质量保证的具体挑战。澳大利亚MRI-LINAC是一个原型系统,探讨了内联方向,辐射束平行于主磁场。这项工作的目的是委员会委员会在临床治疗中申请其在临床治疗中的辐射相关方面。方法:微调辐射束对磁场的物理对准,辐射头的磁屏蔽被设计成实现最佳光束特性。通过梁属性的调查测量来指导这些步骤。随后,机器性能与IEC60976 / 77标准的要求有基准测试。最后,在AAPM任务组106建议之后获取几何和剂量数据,以表征用于在治疗计划系统和蒙特卡罗模拟中建模的光束。已经考虑了对剂量沉积和探测器响应的磁场效应,并突出了内联设计特定的问题。结果:获得了辐射束轴的对准和2mm公差内的成像异电。该系统由两个来源到Isocentre距离(SID)委托(SID):2.4和1.8米。剂量监测系统的再现性和比例符合IEC标准的较大SID,但在较短的SID下略微超过它。轮廓对称性在较大且更短的SID下的字段持续到高达约34×34和21×21cm〜(2)的字段仍为103%。没有观察到横向系统的PEPUMBRA不对称性。在中心轴上导致高入口剂量的电子聚焦效果是量化的,并且已经研究了最小化的方法。结论:开发并采用方法来研究和量化内联MRI-LINAC系统的剂量性质。澳大利亚MRI-LINAC系统在梁属性方面经过微调,并委托,构成了朝向患者治疗内联的MRI-LINACS应用的关键步骤。

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