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首页> 外文期刊>Physics in medicine and biology. >A water calorimeter for on-site absorbed dose to water calibrations in Co-60 and MV-photon beams including MRI incorporated treatment equipment
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A water calorimeter for on-site absorbed dose to water calibrations in Co-60 and MV-photon beams including MRI incorporated treatment equipment

机译:用于现场吸收剂量的水热量计到CO-60和MV-Photon梁中的水校准,包括MRI Inclocded处理设备

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In reference dosimetry the aim is to establish the absorbed dose to water, Dw, under reference conditions. However, existing dosimetry protocols are not always applicable for rapidly emerging new treatment modalities. For primary standard dosimetry laboratories it is generally not feasible to acquire such modalities. Therefore it is strongly desired that D-w measurements with primary standards can be performed on-site in clinical beams for the new treatment modalities in order to characterize and calibrate detectors. To serve this need, VSL has developed a new transportable water calorimeter serving as a primary D-w standard for Co-60 and MV-photons including MRI incorporated treatment equipment. Special attention was paid to its operation in different beam geometries and beam modalities including the application in magnetic fields. The new calorimeter was validated in the VSL Co-60 beam and on-site in clinical MV-photon beams. Excellent agreement of 0.1% was achieved with previous Co-60 field calibrations, i.e. well within the uncertainty of the previous calorimeter, and with measurements performed in horizontal and vertical MV-photon beams. k(Q) factors, determined for two PTW 30013 ionization chambers, agreed very well with available literature data. The relative combined standard uncertainty (k = 1) for Dw measurements in Co-60 and MV-photons is 0.37%. Calibrations are carried out with a standard uncertainty of 0.42% and kQ-factors are determined with a relative standard uncertainty of 0.40%.
机译:在参考剂量中,目的是在参考条件下建立吸收的剂量,DW,DW。然而,现有的剂量法协议并不总是适用于快速新兴的新治疗方式。对于主要标准剂量测定实验室来说,获得这种方式通常是不可行的。因此,强烈希望具有主要标准标准的D-W测量可以在用于新的治疗方式的临床梁中进行现场,以表征和校准探测器。为了满足这种需求,VSL开发了一种新的可运输水量热计,其作为CO-60和MV-光子的主要D-W标准,包括MRI Inclocdated设备。特别注意其在不同光束几何形状和光束模型中的操作,包括在磁场中的应用。在VSL CO-60光束和临床MV-PHOTON梁的现场验证了新的量计。通过先前的CO-60场校准实现了0.1%的优异协议,即在先前量热计的不确定度内,并在水平和垂直的MV光子束中进行测量。 K(Q)为两个PTW 30013电离室确定的因素,非常符合可用文献数据。 CO-60和MV-光子中DW测量的相对组合的标准不确定性(K = 1)为0.37%。校准具有0.42%的标准不确定度,并且测定kQ因子的相对标准不确定度为0.40%。

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