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Verification of stereotactic cranial radiotherapy treatments with MR-based gel dosimeters: practical aspects

机译:验证基于MR的凝胶剂量计的立体定向颅放射治疗:实践方面

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Image Guided Radiotherapy (IGRT) systems allow delivering high doses of radiation to a tumour with great precision and accuracy. In this work, we use patient-specific head MR-based gel dosimeters as an end-to-end test to commission IGRT delivery systems, for stereotactic cranial radiotherapy, and investigate possible sources of errors associated with practical aspects of the measurements. A CT scan of a patient is used to 3D print the shape of the cranial bones to create head phantoms with MR-based gel inside. Each phantom was used as a patient, following the radiotherapy workflow which includes: taking a CT scan of the phantom, calculating the dose distribution using a treatment planning system (TPS) and delivering the radiation calculated by the TPS (to target three different lesions: Big, Medium and Small). Each phantom was then scanned on an MR scanner to obtain a T2 map (linear with dose), which was then rigidly registered with the CT scan of the phantom based on the phantom structures. Good agreement was obtained between the normalized R2 (=1/T2) values and TPS simulations. The relationship between R2 values and dose was investigated based on 3D regions including each lesion. Good linearity was found, but different R2-dose values relationship was obtained depending on the selected regions. The impact of applying a registration based on each lesion (and not the phantom structures) was also tested. Results show that the registration has an impact on the relationship between R2 values and dose, and although absolute dose measurements are still not possible with these MR-based gel dosimeters, they provide very detailed geometrical 3D information to validate IGRT radiotherapy treatments with high level of accuracy.
机译:图像引导放射疗法(IGRT)系统允许以极高的精度和准确度向肿瘤提供高剂量的辐射。在这项工作中,我们使用患者特定的头部先生的凝胶剂量计作为委托Igrt递送系统的端到端测试,对于立体定向颅放射治疗,并研究了与测量的实际方面相关的可能误差源。患者的CT扫描用于3D打印颅骨的形状,以利用基于MR基凝胶产生头部幻影。在放射疗法工作流程之后,每个幻影用作患者,该患者包括:采用幻影的CT扫描,使用治疗计划系统(TPS)计算剂量分布,并递送TPS计算的辐射(以靶向三种不同的病变:大,中小小)。然后在MR扫描仪上扫描每个幻像以获得T2映射(用剂量线性),然后基于模体结构对Phantom的CT扫描刚性登记。在归一化R2(= 1 / T2)值和TPS模拟之间获得了良好的一致性。基于包括每个病变的3D区域研究了R2值和剂量之间的关系。发现了良好的线性,但根据所选区域获得不同的R2剂量值关系。还测试了基于每个病变(而不是幻影结构)的对注册的影响。结果表明,注册对R2值和剂量之间的关系产生了影响,尽管这些基于MR的凝胶剂量计仍然不可能进行绝对剂量测量,但它们提供了非常详细的几何3D信息,以验证具有高水平的IGRT放射治疗治疗方法准确性。

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