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首页> 外文期刊>Journal of Contemporary Brachytherapy >3D printer-based novel intensity-modulated vaginal brachytherapy applicator: feasibility study
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3D printer-based novel intensity-modulated vaginal brachytherapy applicator: feasibility study

机译:3D基于打印机的新型强度调制的阴道近距离放射治疗器:可行性研究

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摘要

Purpose To design a novel high-dose-rate intracavitary applicator which may lead to enhanced dose modulation in the brachytherapy of gynecological cancers. Material and methods A novel brachytherapy applicator, auxiliary equipment and quality control phantom were modeled in SketchUp Pro 2017 modeling software and printed out from a MakerBot Replicator Z18 three-dimensional printer. As a printing material polylactic acid (PLA) filament was used and compensator materials including aluminum, stainless-steel and Cerrobend alloy were selected according to their radiation attenuation properties. To evaluate the feasibility of the novel applicator, two sets of measurements were performed in a Varian GammaMed iX Plus high-dose rate iridium-192 (sup192/supIr) brachytherapy unit and all of the treatment plans were calculated in Varian BrachyVision treatment planning system v.8.9 with TG43-based formalism. In the first step, catheter and source-dwell positioning accuracy, reproducibility of catheter and source positions, linearity of relative dose with changing dwell times and compensator materials were tested to evaluate the mechanical stability of the designed applicator. In the second step, to validate the dosimetric accuracy of the novel applicator measured point dose and two-dimensional dose distributions in homogeneous medium were compared with calculated data in the treatment planning system using PTW VeriSoft v.5.1 software. Results In mechanical quality control tests source-dwell positioning accuracy and linearity of the designed applicator were measured as ≤ 0.5 mm and ≤ 1.5%, respectively. Reproducibility of the treatment planning was ≥ 97.7% for gamma evaluation criteria of 1 mm distance to agreement and 1% dose difference of local dose. In dosimetric quality control tests, maximum difference between measured and calculated point dose was found as 3.8% in homogeneous medium. In two-dimensional analysis, the number of passing points was greater than 90% for all measurements using gamma evaluation criteria of 3 mm distance to agreement and 3% dose difference of local dose. Conclusions The novel brachytherapy applicator met the necessary requirements in quality control tests.
机译:目的设计一种新型高剂量速率腔内涂药器,其可能导致妇科癌症的近距离放射治疗中的剂量调节增强。材料和方法新型近距离放射治疗器,辅助设备和质量控制幻像在Sketchup Pro 2017建模软件中进行了建模,并从Makerbot Replicator Z18三维打印机中打印出来。作为印刷材料聚乳酸(PLA)丝,根据其辐射衰减特性选择包括铝,不锈钢和Cerrobend合金的补偿材料。为了评估新颖涂敷器的可行性,在Varian令人炎症IX加上高剂量率Iridium-192( 192 Ir)近距离放射治疗单元和所有治疗计划中进行了两组测量。 Varian BrachyVision治疗计划系统V.8.9基于TG43的形式主义。在第一步,导管和源 - 停留定位精度,导管和源位置的再现性,具有改变的停留时间和补偿器材料的相对剂量的线性度和补偿器材料,评价设计涂敷器的机械稳定性。在第二步中,为了验证新颖的涂敷器的剂量测定点,使用PTW Verisoft V.5.1软件将均匀介质中的均匀介质中的二维剂量分布进行比较。导致机械质量控制试验,设计涂布器的源 - 液位定位精度和线性分别测量为≤0.5mm和≤1.5%。治疗计划的再现性≥1mm的伽马评估标准≥97.7%,距离1毫米的距离和局部剂量的1%剂量差异。在剂量测定质量控制测试中,在均相培养基中发现测量和计算点剂量之间的最大差异为3.8%。在二维分析中,使用伽马评估标准3mm的距离和局部剂量的3%剂量差异,通过伽马评估标准和局部剂量的3%剂量差异,通过点的数量大于90%。结论新型近距离放射治疗器符合质量控制试验的必要要求。

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