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Absolute Calibration of the Elekta Unity MR Linac Using the UK Code of Practice for High-Energy Photon Dosimetry

机译:Elekta Unity的绝对校准Linac先生使用英国的高能量光子剂量测定法规

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Absolute dosimetry for MR Linacs is complicated by non-standard reference conditions, the non-suitability of the UK secondary standard chamber for use in water and the effects of the magnetic field on the response of Farmer field chambers. Measurements were made on a pre-clinical 7 MV Elekta Unity MR Linac. Reference conditions were chosen as isocentre (143.5 cm SAD), 10 cm deep, 10 x 10 cm2 field and gantry angle 90° to avoid output variation from liquid helium levels dropping in the surrounding annulus. TPR 20/10 was measured as 0.698 at isocentre. Measurements on a conventional linac demonstrated that TPR 20/10 does not vary between SAD 100 cm and 143.5 cm. The UK National Physical Laboratory (NPL) provides calibration factors, N_D, for the secondary standard NE 2611A thimble chamber in terms of absorbed dose to water. N_D was taken for the value of the measured TPR 20/10. Independent intercomparisons were made at 6 MV on a conventional linac between the NE2611A and two PTW waterproof Farmer 30013 chambers. The response of these chambers varies very slowly with energy hence it is reasonable to assume this introduces minimal uncertainty. Ion recombination and polarity correction factors measured on the MR Linac were unchanged by the magnetic field. An additional correction factor to account for the 1.5 T magnetic field on the Farmer chambers was measured as 0.986 taking the ratio of TP corrected readings before and after ramp-up of the magnetic field. An orientation parallel to the magnetic field (along the bore of the MR Linac) was chosen to minimise the magnitude of this factor. An independent audit was performed by the NPL using alanine pellets and Farmer chambers calibrated via a water calorimeter from the Netherlands primary standards laboratory which operates within the MR Linac. This gave agreement with our calibration to within 1.0%.
机译:LINACS的绝对剂量法通过非标准参考条件,英国二级标准室的不适合性,用于水的不适合性以及磁场对农民场腔室响应的影响。在临床前7 MV Elekta Unity Mr LinaC中进行了测量。选择参考条件作为Isocentre(143.5cm Sad),10cm深,10×10cm2场和龙门杆角度90°,以避免在周围环空中滴下液体氦水平的输出变化。 TPR 20/10在Isocentre下测量为0.698。传统LINAC的测量证明TPR 20/10在伤害100cm和143.5cm之间不变化。英国国家物理实验室(NPL)为二级标准NE 2611A顶针室提供校准因子N_D,以吸收剂量为水。 N_D是为了测量的TPR 20/10的价值。在NE2611A和两种PTW防水农民30013室之间的传统LINAC上以6mV在6mV下进行独立的离法。这些腔室的响应随能量而变化非常缓慢,因此可以合理地假设这引入了最小的不确定性。在LinaC MR上测量的离子复合和极性校正因子由磁场不变。以额外的校正因子解释为农民室上的1.5 T磁场的额外校正因子为0.986,以磁场升高之前和之后的TP校正读数的比率。选择平行于磁场的取向(沿着LINAC先生的孔)以最小化该因子的大小。 NPL使用丙氨酸颗粒和农民室通过来自Linac先生的主要标准实验室校准的丙氨酸颗粒和农民腔室进行了独立的审计。这使得我们的校准达到1.0%。

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