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首页> 外文期刊>Radiotherapy and oncology: Journal of the European Society for Therapeutic Radiology and Oncology >Dosimetric consequences of rotational errors in radiation therapy of pediatric brain tumor patients
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Dosimetric consequences of rotational errors in radiation therapy of pediatric brain tumor patients

机译:小儿脑肿瘤患者放射治疗中旋转误差的剂量学后果

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Purpose: To quantify the rotational offsets and estimate the dose effect of rotation on the target volume and normal tissues in children with brain tumor. Methods: Twenty-one pediatric patients with brain tumors were included in this study. Cone-beam CT was performed before each treatment and at the end of every other treatment. Translational offsets were corrected before the treatment. An offline analysis was performed to quantify rotational errors. The treatment plans were altered and recalculated to simulate a rotation of 2° and 4°, and the dose changes were quantified. Results: 1016 CBCT datasets were analyzed for this report. The mean of the rotations were not meaningfully different from zero. 18.1% of the fractions had rotations with a magnitude ≥2°, 5.0% had rotations ≥3° and 0.9% had rotations ≥4°. For the 2° rotational simulation, the gEUD values of the PTV and critical structures changed by less than 2%. For the 4° simulation, parallel type normal structures had minor changes (<2%), but serial type normal structures and the PTV had changes of 10% and 5%, respectively. Conclusions: The majority of rotational errors observed were less than 1°. A rotational error of 2° produced negligible changes in the gEUD to critical structures or target volumes. Rotational errors ≥4° produced undesirable results, therefore, at a minimum, errors >2° should be corrected.
机译:目的:量化旋转偏移量,并估计旋转对脑瘤患儿目标体积和正常组织的剂量作用。方法:本研究纳入了21例小儿脑肿瘤患者。锥束CT在每次治疗之前和其他治疗结束时进行。治疗前校正平移偏移。进行了离线分析以量化旋转误差。修改治疗计划并重新计算,以模拟2°和4°旋转,并量化剂量变化。结果:本报告分析了1016个CBCT数据集。旋转的平均值与零没有显着差异。馏分的18.1%的旋转幅度≥2°,5.0%的旋转幅度≥3°,0.9%的旋转幅度≥4°。对于2°旋转模拟,PTV和关键结构的gEUD值变化小于2%。对于4°模拟,平行型标准结构的变化较小(<2%),而串行型标准结构和PTV的变化分别为10%和5%。结论:观察到的大多数旋转误差均小于1°。 2°的旋转误差在gEUD上对关键结构或目标体积的变化可忽略不计。旋转误差≥4°会产生不良结果,因此,至少应校正> 2°的误差。

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