首页> 外文期刊>International Journal of Radiation Oncology, Biology, Physics >Three-dimensional dose verification for intensity-modulated radiation therapy in the radiological physics centre head-and-neck phantom using optical computed tomography scans of ferrous xylenol-orange gel dosimeters.
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Three-dimensional dose verification for intensity-modulated radiation therapy in the radiological physics centre head-and-neck phantom using optical computed tomography scans of ferrous xylenol-orange gel dosimeters.

机译:使用二甲苯酚-橙色凝胶剂量计的光学计算机断层扫描技术,对放射物理中心头模中的强度调制放射疗法进行三维剂量验证。

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PURPOSE: To extend the Radiological Physics Centre (RPC) intensity-modulated radiation therapy dose verification protocol to three dimensions using optical computed tomography (CT) scans of ferrous xylenol-orange (FX) gels. METHODS AND MATERIALS: The dosimetry insert in the RPC head-and-neck phantom was replaced with an FX cylindrical gel dosimeter. Two gels were calibrated, independently irradiated with 6-MV X-ray beams and scanned using laser and cone-beam (Vista) optical CT, respectively. For matching dose slices, measured dose distributions were compared with Pinnacle3 computed distributions. RESULTS: Within high-dose regions and low gradients, doses measured using laser CT were 2% to 3% less than the computed dose, whereas with cone-beam CT they were 4% to 5% less. Inside the central 90% of the gel cylinder diameter, the fraction of voxels satisfying the two-dimensional gamma analysis (5% dose difference, 3-mm distance to agreement) with laser-beam- and cone-beam-measured dose distributions were 98.4% and 99.0%, respectively. A three-dimensional gamma analysis with cone-beam data revealed that 96.7% of voxels within the central 90% gel volume satisfied the above criteria. Within the axial and sagittal planes through the primary planning target volume (PTV), computed and measured doses using GAFChromicEBT film (RPC measured) and cone-beam scanned FX gel generally agreed. At equivalent points in the planning target volumes, computed, thermoluminescent dosimeter (RPC-measured), and gel point doses agreed to within 5.1% in absolute dose. CONCLUSIONS: Laser and cone-beam CT yield comparable dose distributions in high-dose regions. The RPC head phantom and optical CT-scanned FX gels can be used for accurate intensity-modulated radiation therapy dose verification in three dimensions.
机译:目的:使用二甲苯酚橙(FX)亚铁的光学计算机断层扫描(CT)扫描,将放射物理中心(RPC)强度调制的放射治疗剂量验证方案扩展到三个维度。方法和材料:用FX圆柱形凝胶剂量计替代RPC头模中的剂量学插入物。校准两种凝胶,分别用6-MV X射线束照射,并分别使用激光和锥束(Vista)光学CT进行扫描。对于匹配的剂量切片,将测得的剂量分布与Pinnacle3计算的分布进行比较。结果:在高剂量区域和低梯度内,使用激光CT测量的剂量比计算的剂量低2%至3%,而使用锥形束CT的剂量则比计算的剂量低4%至5%。在凝胶圆柱体直径的中心90%内,满足二维伽马分析(5%剂量差异,一致的3mm距离)且激光束和锥束测量的剂量分布的体素比例为98.4 %和99.0%。带有锥束数据的三维伽马分析显示,中心90%凝胶体积内96.7%的体素满足上述标准。在通过主要计划目标体积(PTV)的轴向和矢状平面内,使用GAFChromicEBT膜(测得RPC)和锥形束扫描FX凝胶的计算和测量剂量通常是一致的。在计划目标体积的等效点,计算的热剂量计(RPC测量)和胶凝点剂量在绝对剂量中均同意在5.1%以内。结论:激光和锥形束CT在高剂量区域可产生相当的剂量分布。 RPC头部幻像和CT扫描光学FX凝胶可用于在三个方面进行精确的强度调制放射治疗剂量验证。

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