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首页> 外文期刊>Physics in medicine and biology. >Comparison of the IAEA TRS-398 and AAPM TG-51 absorbed dose to water protocols in the dosimetry of high-energy photon and electron beams.
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Comparison of the IAEA TRS-398 and AAPM TG-51 absorbed dose to water protocols in the dosimetry of high-energy photon and electron beams.

机译:在高能光子和电子束的剂量测定中,IAEA TRS-398和AAPM TG-51吸收剂量与水的方案比较。

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The International Atomic Energy Agency (IAEA TRS-398) and the American Association of Physicists in Medicine (AAPM TG-51) have published new protocols for the calibration of radiotherapy beams. These protocols are based on the use of an ionization chamber calibrated in terms of absorbed dose to water in a standards laboratory's reference quality beam. This paper compares the recommendations of the two protocols in two ways: (i) by analysing in detail the differences in the basic data included in the two protocols for photon and electron beam dosimetry and (ii) by performing measurements in clinical photon and electron beams and determining the absorbed dose to water following the recommendations of the two protocols. Measurements were made with two Farmer-type ionization chambers and three plane-parallel ionization chamber types in 6, 18 and 25 MV photon beams and 6, 8, 10, 12, 15 and 18 MeV electron beams. The Farmer-type chambers used were NE 2571 and PTW 30001, and the plane-parallel chambers were a Scanditronix-Wellhofer NACP and Roos, and a PTW Markus chamber. For photon beams, the measured ratios TG-51/TRS-398 of absorbed dose to water Dw ranged between 0.997 and 1.001, with a mean value of 0.999. The ratios for the beam quality correction factors kQ were found to agree to within about +/-0.2% despite significant differences in the method of beam quality specification for photon beams and in the basic data entering into kQ. For electron beams, dose measurements were made using direct N(D,w) calibrations of cylindrical and plane-parallel chambers in a 60Co gamma-ray beam, as well as cross-calibrations of plane-parallel chambers in a high-energy electron beam. For the direct N(D,w) calibrations the ratios TG-51/TRS-398 of absorbed dose to water Dw were found to lie between 0.994 and 1.018 depending upon the chamber and electron beam energy used, with mean values of 0.996, 1.006, and 1.017, respectively, for the cylindrical, well-guarded and not well-guarded plane-parallel chambers. The Dw ratios measured for the cross-calibration procedures varied between 0.993 and 0.997. The largest discrepancies for electron beams between the two protocols arise from the use of different data for the perturbation correction factors p(wall) and p(dis) of cylindrical and plane-parallel chambers, all in 60Co. A detailed analysis of the reasons for the discrepancies is made which includes comparing the formalisms, correction factors and the quantities in the two protocols.
机译:国际原子能机构(IAEA TRS-398)和美国物理学家协会(AAPM TG-51)发布了用于校准放射线束的新协议。这些协议基于在标准实验室参考质量光束中根据对水的吸收剂量进行校准的电离室的使用。本文以两种方式比较了这两种方案的建议:(i)通过详细分析两种用于光子和电子束剂量测定方案的基本数据的差异,以及(ii)通过对临床光子和电子束进行测量并按照这两个协议的建议确定对水的吸收剂量。使用6、18和25 MV MV光子束和6、8、10、12、15和18 MeV电子束中的两个Farmer型电离室和三种平面平行电离室进行测量。使用的Farmer型腔室为NE 2571和PTW 30001,而与平面平行的腔室为Scanditronix-Wellhofer NACP和Roos,以及PTW Markus腔室。对于光子束,所测量的吸收剂量与水Dw的比TG-51 / TRS-398在0.997和1.001之间,平均值为0.999。尽管在光子束的束质量指定方法和输入到kQ的基本数据中存在显着差异,但束质量校正因子kQ的比率仍在大约+/- 0.2%的范围内。对于电子束,使用在60Co伽马射线束中圆柱和平面平行腔的直接N(D,w)校准,以及在高能电子束中交叉校准平面平行腔的剂量来进行剂量测量。对于直接的N(D,w)校准,根据所使用的腔室和电子束能量,发现吸收剂量TG-51 / TRS-398与水Dw的比率在0.994至1.018之间,平均值为0.996、1.006分别为圆柱形,防护良好和防护不良的平面平行腔室,分别为1.017和1.017。交叉校准程序测得的Dw比在0.993和0.997之间变化。两种协议之间电子束的最大差异是由于使用圆柱形和平面平行腔室的摄动校正因子p(wall)和p(dis)的数据不同,所有数据均在60Co中。对产生差异的原因进行了详细分析,其中包括比较两种方案中的形式,校正因子和数量。

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