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Extrapolation chamber mounted on perspex for calibration of high energy photon and electron beams from a clinical linear accelerator

机译:外推腔安装在有机玻璃上,用于校准来自临床线性加速器的高能光子和电子束

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摘要

The objective of the present study is to establish radiation standards for absorbed doses, for clinical high energy linear accelerator beams. In the nonavailability of a cobalt-60 beam for arriving at Nd, water values for thimble chambers, we investigated the efficacy of perspex mounted extrapolation chamber (EC) used earlier for low energy x-rays and beta dosimetry. Extrapolation chamber with facility for achieving variable electrode separations 10.5mm to 0.5mm using micrometer screw was used for calibrations. Photon beams 6 MV and 15 MV and electron beams 6 MeV and 15 MeV from Varian Clinac linacs were calibrated. Absorbed Dose estimates to Perspex were converted into dose to solid water for comparison with FC 65 ionisation chamber measurements in water. Measurements made during the period December 2006 to June 2008 are considered for evaluation. Uncorrected ionization readings of EC for all the radiation beams over the entire period were within 2% showing the consistency of measurements. Absorbed doses estimated by EC were in good agreement with in-water calibrations within 2% for photons and electron beams. The present results suggest that extrapolation chambers can be considered as an independent measuring system for absorbed dose in addition to Farmer type ion chambers. In the absence of standard beam quality (Co-60 radiations as reference Quality for Nd,water) the possibility of keeping EC as Primary Standards for absorbed dose calibrations in high energy radiation beams from linacs should be explored. As there are neither Standard Laboratories nor SSDL available in our country, we look forward to keep EC as Local Standard for hospital chamber calibrations. We are also participating in the IAEA mailed TLD intercomparison programme for quality audit of existing status of radiation dosimetry in high energy linac beams. The performance of EC has to be confirmed with cobalt-60 beams by a separate study, as linacs are susceptible for minor variations in dose output on different days.
机译:本研究的目的是为临床高能线性加速器束建立吸收剂量的辐射标准。在无法获得钴60束达到Nd(顶针腔室的水值)的情况下,我们研究了早先用于低能X射线和β剂量测定的有机玻璃安装外推腔(EC)的功效。外推腔室配有使用千分尺螺钉实现10.5mm至0.5mm可变电极间距的设施,用于校准。校准了来自Varian Clinac直线加速器的光子束6 MV和15 MV以及电子束6 MeV和15 MeV。将有机玻璃的吸收剂量估算值转换为固体水剂量,以便与水中的FC 65电离室测量结果进行比较。在2006年12月至2008年6月期间进行的测量将考虑进行评估。在整个期间内,所有辐射束的EC的未校正电离读数均在2%以内,表明测量的一致性。 EC估计的吸收剂量与水中校准的光子和电子束的误差在2%以内。目前的结果表明,除了农民型离子室外,外推室可作为吸收剂量的独立测量系统。在没有标准射束质量的情况下(Co-60辐射作为Nd,水的参考质量),应探索将EC保持为直线加速器高能辐射束吸收剂量校准的主要标准的可能性。由于我国既没有标准实验室,也没有SSDL,因此我们希望将EC保持为医院病房校准的本地标准。我们还参加了IAEA邮寄的TLD比对计划,以对高能直线加速器射线束的放射剂量学现状进行质量审核。 EC的性能必须通过单独的研究用60钴钴来确认,因为直线加速器在不同的日子输出的剂量会有细微的变化。

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