低能电子束下平面平行电离室交叉校正系数的剂量计量精度

IF 0.7 Q4 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Polish Journal of Medical Physics and Engineering Pub Date : 2021-12-01 DOI:10.2478/pjmpe-2021-0036
K. Polaczek-Grelik, A. Kawa-Iwanicka, Ł. Michalecki
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引用次数: 1

摘要

摘要:交叉校准过程的精度取决于电离室类型,包括参考电离室和考虑电离室。此外,光束能量和幽灵介质会影响交叉校准系数的精度,导致剂量估计的系统误差,从而影响直线光束输出的检查。这将导致在治疗计划系统中计算的剂量与交付给患者的剂量之间的系统性不匹配。材料和方法:分析了FC65-G、CC13和CC01顶针基准室以及6、9和15 MeV电子束的使用情况。由于这种剂量计类型的文献资料很少,因此对平面平行PPC05腔室进行了校准。分析了测量介质和有效测量点对测量结果的影响。结果:在针形CC13药箱交叉标定的基础上,PPC05药箱的剂量重建精度可达~0.1%。在≥9MeV的束流中得到的Nd,w,Qcross的剂量重建精度为0.1 - 0.5%。在没有光束质量校正的情况下,15 MeV Nd,w,Qcross比Co-60 Nd,w,0低10%。不同的EPOM位移导致Nd,w,Qcross值的差异高达0.6%。结论:在6 ~ 15mev电子束范围内,采用小体积和组织等效材料的电离室能提供更精确的交叉标定系数。在6 MeV和9 MeV光束的情况下,有效测量点的确切位置是次要的。水中交叉校准系数可以在固体介质中使用而不损失剂量精度。
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Dosimetric accuracy of a cross-calibration coefficient for plane-parallel ionization chamber obtained in low-energy electron beams using various cylindrical dosimeters
Abstract Introduction: The accuracy of the cross-calibration procedure depends on ionization chamber type, both used as reference one and under consideration. Also, the beam energy and phantom medium could influence the precision of cross calibration coefficient, resulting in a systematic error in dose estimation and thus could influence the linac beam output checking. This will result in a systematic mismatch between dose calculated in treatment planning system and delivered to the patient. Material and methods: The usage of FC65-G, CC13 and CC01 thimble reference chambers as well as 6, 9, and 15 MeV electron beams has been analyzed. A plane-parallel PPC05 chamber was calibrated since scarce literature data are available for this dosimeter type. The influence of measurement medium and an effective point of measurement (EPOM) on obtained results are also presented. Results: Dose reconstruction precision of ~0.1% for PPC05 chamber could be obtained when cross-calibration is based on a thimble CC13 chamber. Nd,w,Qcross obtained in beam ≥ 9MeV gives 0.1 – 0.5% precision of dose reconstruction. Without beam quality correction, 15 MeV Nd,w,Qcross is 10% lower than Co-60 Nd,w,0. Various EPOM shifts resulted in up to 0.6% discrepancies in Nd,w,Qcross values. Conclusions: Ionization chamber with small active volume and tissue-equivalent materials supplies more accurate cross-calibration coefficients in the range of 6 – 15 MeV electron beams. In the case of 6 and 9 MeV beams, the exact position of an effective point of measurement is of minor importance. In-water cross-calibration coefficient can be used in a solid medium without loss of dose accuracy.
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来源期刊
Polish Journal of Medical Physics and Engineering
Polish Journal of Medical Physics and Engineering RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
1.30
自引率
0.00%
发文量
19
期刊介绍: Polish Journal of Medical Physics and Engineering (PJMPE) (Online ISSN: 1898-0309; Print ISSN: 1425-4689) is an official publication of the Polish Society of Medical Physics. It is a peer-reviewed, open access scientific journal with no publication fees. The issues are published quarterly online. The Journal publishes original contribution in medical physics and biomedical engineering.
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