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Validation of 4D dose calculation using an independent motion monitoring by the calypso tracking system and 3D polymer gel dosimetry

机译:Calypso跟踪系统和3D聚合物凝胶剂量测定法使用独立运动监测验证4D剂量计算

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This study aims to evaluate an in-house developed 4D dose calculation algorithm that uses Calypso motion tracking data and to compare the results against 3D polymer gel dosimetry measurements. For this, a cylindrical water phantom was constructed that allows to insert (i) the polymer gel, (ii) a PinPoint ionization chamber and (iii) Calypso beacons for motion tracking. A treatment plan covering a gel flask in the center of the static phantom plus a 1 mm margin homogeneously with dose was generated. During irradiation, however, the phantom was moved periodically by means of a robot with a peak-to-peak amplitude of 2.5 cm. The results of the 4D dose calculations show good agreement with the gel-dosimetric measurements in most of the volume. Remaining small deviations have to be evaluated in further experiments. The developed experimental setup allows for 3D-dosimetric validation of 4D dose calculations algorithms prior to application in patients.
机译:本研究旨在评估内部开发的4D剂量计算算法,该算法使用CALYPSO运动跟踪数据,并将结果与​​3D聚合物凝胶剂量测量测量进行比较。为此,构建了圆柱形水体模体,其允许插入(I)聚合物凝胶,(ii)针尖电离室和(iii)拨打电离室的运动跟踪。产生覆盖静电模镜的中心的凝胶烧瓶加上1mm均匀的用剂量的凝胶烧瓶。然而,在照射期间,通过具有2.5厘米的峰值峰值振幅的机器人周期性地移动幻像。 4D剂量计算的结果显示出与大部分体积中的凝胶剂量测量良好的一致性。必须在进一步的实验中评估剩余的小偏差。开发的实验装置允许在患者施用之前进行4D剂量计算算法的3D剂量验证。

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