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Reference dosimetry and small-field dosimetry in external beam radiotherapy: Results from a Danish intercomparison study

机译:外照射放疗中的参考剂量测定和小视野剂量测定:来自丹麦比对研究的结果

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摘要

A comparison of dosimetry methods at different clinics can be used as a means to uncover systematic uncertainties in ra-diotherapy. To assess the current status of reference dosimetry and small-field dosimetry in clinical practice, a collaborative compari-son study involving several dosimetry methods was performed by DTU Nutech at six Danish clinics. The first part of the intercompa-rison regarded the consistency of reference dosimetry. Absorbed dose to water under reference conditions was measured using a Farmer ionization chamber, and was found to agree within 1 % with the daily dose checks obtained routinely at each clinic. The second part of the study concerned the accuracy of small-field dosimetry and dose calculations. The geometric size of small fields down to 1 cm x 1 cm was measured using radiochromic film. Minor discre-pancies were seen between the nominal field sizes set by the colli-mators and the measured field sizes, although one clinic showed field dimensions that were down to 21 ± 3 % smaller than expected. Small-field correction factors were estimated for a PinPoint cham-ber and a diamond detector using a fibre-coupled organic scintilla-tor as reference, after correcting for volume averaging. The correc-tions were found to be within 2 % down to the 1 cm x 1 cm field size. Output factor measurements performed with the three detec-tors were compared with the commissioning beam data originally acquired by the individual clinics using their own detectors and protocols, and with dose calculations performed using the treatment planning systems. Measured output factors agreed within 3 % with commissioning beam data and within 2 % with dose calculations for small MLC-defined fields. The study demonstrated (i) consistency of reference dosimetry and small-field dosimetry on a national le-vel, and (ii) clinical applications of fiber-coupled plastic scintilla-tors. The study also demonstrated that the estimation of detector-specific correction factors in small fields is consistent among clinics and linac models, supporting the robustness and usefulness of the proposed IAEA formalism for detector-specific correction factors for non-reference fields.
机译:在不同诊所进行剂量学方法的比较可以用作揭示放射治疗中系统性不确定性的一种手段。为了评估参考剂量法和小剂量剂量法在临床实践中的现状,DTU Nutech在丹麦的六家诊所进行了一项涉及几种剂量法的合作比较研究。相互竞争的第一部分考虑了参考剂量的一致性。使用农民电离室测量参考条件下对水的吸收剂量,发现与每个诊所常规获得的每日剂量检查相符1%。研究的第二部分涉及小视野剂量测定法和剂量计算的准确性。使用放射致变色膜测量小至1 cm x 1 cm的小视场的几何尺寸。尽管由一间诊所显示的视野尺寸比预期的小21%至3%,但在由调解员设定的标称视野尺寸和测得的视野尺寸之间发现较小的差异。在校正体积平均后,使用光纤耦合的有机闪烁器作为参考,对PinPoint斜面和金刚石探测器的小视场校正因子进行了估算。发现在小于1 cm x 1 cm的场尺寸的情况下,校正范围在2%以内。将使用三个探测器执行的输出因子测量结果与各个诊所最初使用其自己的检测器和协议获取的调试光束数据进行比较,并与使用治疗计划系统执行的剂量计算进行比较。对于小型MLC定义的场,测量的输出因数与调试光束数据相吻合在3%之内,与剂量计算相吻合在2%之内。这项研究表明(i)参考剂量法和小剂量剂量法在国家一级的一致性,以及(ii)纤维耦合塑料闪烁体的临床应用。这项研究还表明,在小领域中,特定于探测器的校正因子的估计在诊所和直线加速器模型之间是一致的,支持了提议的IAEA形式主义对于非参考领域中针对探测器的校正因子的鲁棒性和实用性。

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