Lee Kam L, Butler Duncan, Bailey Tracy
Australian Radiation Protection and Nuclear Safety Agency, Medical Imaging Section, 619 Lower Plenty Rd, Yallambie, VIC, 3085, Australia.
Australian Radiation Protection and Nuclear Safety Agency, Radiotherapy Section, 619 Lower Plenty Rd, Yallambie, VIC, 3085, Australia.
Australas Phys Eng Sci Med. 2017 Dec;40(4):881-893. doi: 10.1007/s13246-017-0604-9. Epub 2017 Nov 20.
This paper reports the process and findings in establishing the diagnostic beam qualities for the calibration of diagnostic dose meters in the Australian primary standard dosimetry laboratory at the Australian Radiation Protection and Nuclear Safety Agency, ARPANSA. A novel iterative method to achieve the RQR beam quality requirements described by IEC 61267 is presented. The correction factors for the primary standard free-air chamber and their uncertainties are reported. The calibration procedure with detailed uncertainty budget of a typical diagnostic ionisation chamber (model PTW 34060) is reported. Beam profile measurements and details of the use of an external monitor chamber (model PTW 34014) are also reported. The uncertainty in the ARPANSA calibration coefficients is estimated to be 1.2% at k = 2 for both RQR and RQA beam qualities. The laboratory is now able to provide calibration services for radiation detectors used in general X-ray radiography.
本文报告了在澳大利亚辐射防护与核安全局(ARPANSA)的澳大利亚初级标准剂量测定实验室中,建立用于校准诊断剂量仪的诊断束流质量的过程和结果。提出了一种新颖的迭代方法来满足国际电工委员会(IEC)61267所描述的RQR束流质量要求。报告了初级标准自由空气电离室的校正因子及其不确定度。报告了典型诊断电离室(型号PTW 34060)的校准程序以及详细的不确定度预算。还报告了束流剖面测量以及外部监测电离室(型号PTW 34014)的使用细节。对于RQR和RQA束流质量,ARPANSA校准系数的不确定度在k = 2时估计为1.2%。该实验室现在能够为通用X射线摄影中使用的辐射探测器提供校准服务。