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Dosimetric performance of the Elekta Unity MR-linac system: 2D and 3D dosimetry in anthropomorphic inhomogeneous geometry

机译:ELEKTA UNITY MR-LINAC系统的剂量性能:2D和3D中的拟人不均匀几何形状

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摘要

Following the clinical introduction of the Elekta Unity MR-linac, there is an urgent need for development of dosimetry protocols and tools, not affected by the presence of a magnetic field. This work presents a benchmarking methodology comprising 2D/3D passive dosimetry and involving on-couch adaptive treatment planning, a unique step in MR-linac workflows. Two identical commercially available 3D-printed head phantoms (featuring realistic bone anatomy and MR/CT contrast) were employed. One phantom incorporated a film dosimetry insert, while the second was filled with polymer gel. Gel dose-response characteristics were evaluated under the Unity irradiation and read-out conditions, using vials and a cubic container filled with gel from the same batch. Treatment plan for the head phantoms involved a hypothetical large C-shape brain lesion, partly surrounding the brainstem. An IMRT step-and-shoot 7-beam plan was employed. Pre-treatment on-couch MR-images were acquired in order for the treatment planning system to calculate the virtual couch shifts and perform adaptive planning. Absolute 2D and relative 3D measurements were compared against calculations related to both adapted and original plans. Real-time dose accumulation monitoring in the gel-filled phantom was also performed. Results from the vials and cubic container suggest that gel dose-response is linear in the dose range investigated and signal integrity is mature at the read-out timings considered. Head phantom 2D and 3D measurements agreed well with calculations with 3D gamma index passing rates above 90% in all cases, even with the most stringent criteria used (2?mm/2%). By exploiting the 3D information provided by the gel, comparison also involved DVHs, dose-volume and plan quality metrics, which also reflected the agreement between adapted and delivered plans within??4%. No considerable discrepancies were detected between adapted and original plans. A novel methodology was developed and implemented, suitable for QA procedures in Unity. TPS calculations were validated within the experimental uncertainties involved.
机译:继临床引入Elekta Unity MR-Linac后,迫切需要开发剂量测定方案和工具,不受磁场的存在影响。这项工作提出了一种基准方法,包括2D / 3D被动剂量测定法,涉及在沙发适应性治疗计划中,是MR-LINAC工作流程的独特步骤。使用两个相同的商业上可获得的3D印刷头映射(具有现实的骨解剖和MR / CT对比)。一幻影掺入薄膜剂量型材,而第二型胶片填充有聚合物凝胶。在团结辐照和读出条件下评估凝胶剂量 - 响应特性,使用小瓶和从相同批次的凝胶填充的立方体容器。头部幻像的治疗计划涉及假设的大C形脑病变,部分围绕脑干。采用了IMRT步进和拍摄7梁计划。预处理on-Couch MR-Images,以便进行治疗计划系统计算虚拟沙发换档并执行自适应规划。将绝对的2D和相对3D测量与适应和原始计划相关的计算进行比较。还进行了凝胶填充幽灵中的实时剂量累积监测。小瓶和立方体容器的结果表明,凝胶剂量 - 响应在剂量范围内是线性的,所研究的信号完整性在考虑的读出时序成熟。 Head Phantom 2D和3D测量与在所有情况下的3D伽马指数通过90%的速率均匀达成良好,即使使用最严格的标准(2?mm / 2%)。通过利用凝胶提供的3D信息,比较也涉及DVHS,剂量和计划质量指标,这也反映了在4%的适应和交付计划之间的协议。在适应和原始计划之间没有检测到相当大的差异。开发和实施了一种新的方法,适用于统一的QA程序。在涉及的实验不确定性中验证了TPS计算。

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