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Direct absorbed dose to water determination based on water calorimetry in scanning proton beam delivery

机译:基于水量热法在扫描质子束传输中直接吸收剂量确定水

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Purpose: The aim of this manuscript is to describe the direct measurement of absolute absorbed dose to water in a scanned proton radiotherapy beam using a water calorimeter primary standard. Methods: The McGill water calorimeter, which has been validated in photon and electron beams as well as in HDR ~(192)Ir brachytherapy, was used to measure the absorbed dose to water in double scattering and scanning proton irradiations. The measurements were made at the Massachusetts General Hospital proton radiotherapy facility. The correction factors in water calorirhetry were numerically calculated and various parameters affecting their magnitude and uncertainty were studied. The absorbed dose to water was compared to that obtained using an Exradin T1 Chamber based on the IAEA TRS-398 protocol. Results: The overall 1-sigma uncertainty on absorbed dose to water amounts to 0.4% and 0.6% in scattered and scanned proton water calorimetry, respectively. This compares to an overall uncertainty of 1.9% for currently accepted IAEA TRS-398 reference absorbed dose measurement protocol. The absorbed dose from water calorimetry agrees with the results from TRS-398 well to within 1-sigma uncertainty. Conclusions: This work demonstrates that a primary absorbed dose standard based on water calorimetry is feasible in scattered and scanned proton beams.
机译:目的:本手稿的目的是描述使用水量热仪的主要标准直接测量扫描质子放疗束中水的绝对吸收剂量。方法:已在光子和电子束以及HDR〜(192)Ir近距离放射疗法中验证的McGill水量热仪用于测量双散射和扫描质子辐射对水的吸收剂量。这些测量是在麻萨诸塞州综合医院质子放疗设施进行的。数值计算了水热量校正因子,并研究了影响其幅度和不确定度的各种参数。将水的吸收剂量与使用基于IAEA TRS-398规程的Exradin T1室获得的剂量进行比较。结果:在分散质子水量热法和扫描质子水量热法中,水吸收剂量的总1σ不确定度分别为0.4%和0.6%。相比之下,目前接受的IAEA TRS-398参考吸收剂量测量方案的总不确定度为1.9%。量热法吸收的剂量与TRS-398的结果吻合良好,误差在1σ以内。结论:这项工作表明基于水量热法的初级吸收剂量标准在分散和扫描的质子束中是可行的。

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