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Characterization of amorphous thermoluminescence dosimeters for patient dose measurement in X-ray diagnostic procedures

机译:用于X射线诊断程序中患者剂量测量的非晶态热致发光剂量计的表征

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We investigate the use of novel Ge-doped amorphous silica flat fibers as thermoluminescence dosimeters (TLDs) in verifying patient entrance surface-dose (ESD) in diagnostic examinations. Selected fibers with established dosimetric characteristics (including energy dependence, linearity, reproducibility, and fading) were loaded into plastic capsules in groups of six. The fibers have been calibrated against a parallel plate ionization chamber, use being made of x-rays generated at 70 kVp, accessing a Secondary Standards Dosimetry Laboratory (SSDL) facility. The fiber characterization measurements were made using a Toshiba X-ray machine operating within the nominal energies range 40 kVp to 150 kVp, for doses in the range 0.02 mGy up to 3 mGy. For doses from 2 mGy up to 150 mGy, the flat fibers exhibit linearity between TL yield and dose, reproducible to better than 3% standard deviation following repeat measurements (n=3). A marked energy-dependent response is observed for photons generated at potentials from 40 kVp to 150 kVp. From present results, it is concluded that Ge-doped fibers represent a viable system for use in diagnostic dosimetry, corrections being made for the various factors influencing TL yield. (C) 2015 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:我们调查在诊断检查中验证患者入口表面剂量(ESD)时使用新型Ge掺杂的非晶态二氧化硅扁平纤维作为热致发光剂量计(TLD)。将选定的具有确定的剂量特性(包括能量依赖性,线性,重现性和褪色性)的纤维装入塑料胶囊,每组六个。纤维已经通过平行板电离室进行了校准,使用了以70 kVp产生的X射线,并通过了二级标准剂量测定实验室(SSDL)设施。使用Toshiba X射线机进行光纤特性测量,其额定能量范围为40 kVp至150 kVp,剂量范围为0.02 mGy至3 mGy。对于从2 mGy到150 mGy的剂量,扁平纤维在TL收率和剂量之间表现出线性,在重复测量后可重现优于3%的标准偏差(n = 3)。对于在40 kVp至150 kVp的电势下产生的光子,观察到明显的能量依赖性响应。从目前的结果可以得出结论,掺Ge的纤维代表了一种用于诊断剂量学的可行系统,并对影响TL产量的各种因素进行了校正。 (C)2015作者。由Elsevier Ltd.发布。这是CC BY-NC-ND许可(http://creativecommons.org/licenses/by-nc-nd/4.0/)下的开放获取文章。

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