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An Air Core Scintillation Dosimeter for Megavoltage External Beam Dosimetry: Experimental Results

机译:用于兆伏外束剂量测定的空心闪烁剂量计:实验结果

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plastic scintillation dosimeter, using an air core light guide to transport the scintillation signal, has been shown to be free of the unwanted Cerenkov background signal that usually results from exposure of fibre optics to megavoltage photon and electron radiation beams. We report the performance of the air core dosimeter in 6 MV and 18 MV photon beams and 6 MeV and 20 MeV electron beam. The percentage depth dose measurements for both photon beams agree with ionisation chamber measurements to within 1.6%, for depths up to 250 mm, except in the build up region where the positional uncertainty results in a slightly larger deviation. For a 6 MeV and 20 MeV electron beam, the percentage depth dose measurements agree with the ionisation chamber measurements to within 3.6% and 4.5% respectively.For small radiation fields, readings agree with diamond detector readings to within 1.2% for field sizes of 10 x 10 cm down to 1 x 1 cm. The air core dosimeter's performance in two dynamic IMRT test fields agrees well with ionisation chamber measurements whether the dosimeter is located in a high dose region or in a low dose region.
机译:已经证明,使用空心光导传输闪烁信号的塑料闪烁剂量计没有多余的切伦科夫背景信号,该信号通常是由于光纤暴露于兆伏光子和电子辐射束而产生的。我们报告了6 MV和18 MV光子束以及6 MeV和20 MeV电子束中空芯剂量计的性能。对于深度达250 mm的深度,两个光子束的百分比深度剂量测量值与电离室测量值的一致性在1.6%以内,但在堆积区域中,位置不确定性会导致偏差稍大。对于6 MeV和20 MeV电子束,百分比深度剂量测量值与电离室测量值一致,分别在3.6%和4.5%之内。 对于较小的辐射场,对于10 x 10 cm至1 x 1 cm的场,其读数与钻石探测器的读数一致,误差在1.2%以内。无论剂量计位于高剂量区域还是低剂量区域,空心剂量计在两个动态IMRT测试场中的性能都与电离室测量非常吻合。

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