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针对各种临床测量几何形状和放射性核素,对市售放射性核素校准仪的校准设置进行实验测定。

Experimental determination of calibration settings of a commercially available radionuclide calibrator for various clinical measurement geometries and radionuclides.

作者信息

Ceccatelli A, Benassi M, D'Andrea M, De Felice P, Fazio A, Nocentini S, Strigari L

机构信息

Laboratorio di Fisica Medica e Sistemi Esperti, Regina Elena National Cancer Institute, via E. Chianesi, 53 - 00144 Rome, Italy.

出版信息

Appl Radiat Isot. 2007 Jan;65(1):120-5. doi: 10.1016/j.apradiso.2006.06.009. Epub 2006 Sep 25.

Abstract

Following the approach of the National Primary Laboratory of the UK (NPL) for the calibration of radionuclide calibrators, but using a commercially available instrument with no data available in the literature, the radionuclide calibrator response was investigated as a function of different measurement geometries at the "Regina Elena" National Cancer Institute (IRE) in Rome. Working with Italian National Metrology Institute for ionising radiation quantities (ENEA-INMRI), specific calibration factors with traceability to national primary standards were determined for different types of glass vials, solid capsules and plastic syringes, investigating three radionuclides with different energy spectra (Tc-99m, In-111, I-131). For each kind of syringe, calibration correction factors for different filling volumes were calculated. For Tc-99m and I-131 the difference between measured and true activity was in the range 2-7%, depending on measurement geometry. For In-111 a large percentage deviation from the true activity value was found in each geometry considered, reaching 35%. The magnitude of this difference is particularly dependent on the energies of the emitted photons.

摘要

遵循英国国家初级实验室(NPL)校准放射性核素校准仪的方法,但使用的是一种市售仪器且文献中无相关数据,在罗马的“雷吉娜·埃琳娜”国家癌症研究所(IRE)研究了放射性核素校准仪响应与不同测量几何结构的函数关系。与意大利国家电离辐射量计量研究所(ENEA - INMRI)合作,针对不同类型的玻璃瓶、固体胶囊和塑料注射器,确定了可溯源至国家初级标准的特定校准因子,研究了三种具有不同能谱的放射性核素(Tc - 99m、In - 111、I - 131)。对于每种注射器,计算了不同填充体积的校准校正因子。对于Tc - 99m和I - 131,测量活性与真实活性之间的差异在2% - 7%范围内,这取决于测量几何结构。对于In - 111,在所考虑的每种几何结构中都发现与真实活性值存在较大百分比偏差,达到35%。这种差异的大小尤其取决于发射光子的能量。

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