Belgian Nuclear Research Centre (SCK·CEN), Boeretang 200, 2400 Mol, Belgium.
Belgian Nuclear Research Centre (SCK·CEN), Boeretang 200, 2400 Mol, Belgium.
Phys Med. 2018 Jan;45:134-142. doi: 10.1016/j.ejmp.2017.12.011. Epub 2017 Dec 21.
This study presents current status of performance of radiopharmaceutical activity measurements using radionuclide calibrators in Belgium. An intercomparison exercise was performed among 15 hospitals to test the accuracy of Tc, F and In activity measurements by means of radionuclide calibrators. Four sessions were held in different geographical regions between December 2013 and February 2015. The data set includes measurements from 38 calibrators, yielding 36 calibrations for Tc and In, and 21 calibrations for F. For each radionuclide, 3 ml of stock solution was measured in two clinical geometries: a 10 ml glass vial and a 10 ml syringe. The initial activity was typically 100 MBq for Tc, 15 MBq for In and 115 MBq for F. The reference value for the massic activity of the radioactive solutions was determined by means of primary and secondary standardisation techniques at the radionuclide metrology laboratory of the JRC. The overall results of the intercomparison were satisfactory for Tc and F, since most radionuclide calibrators (>70%) were accurate within ±5% of the reference value. Nevertheless, some devices underestimated the activity by 10-20%. Conversely, In measurements were strongly affected by source geometry effects and this had a negative impact on the accuracy of the measurements, in particular for the syringe sample. Large overestimations (up to 72%) were observed, even when taking into account the corrections and uncertainties supplied by the manufacturers for container effects. The results of this exercise encourage the hospitals to perform corrective actions to improve the calibration of their devices where needed.
本研究介绍了目前比利时使用放射性核素校准器测量放射性药物活性的性能状况。为了测试放射性核素校准器对 Tc、F 和 In 活性测量的准确性,在 15 家医院之间进行了一次比对实验。该实验于 2013 年 12 月至 2015 年 2 月期间在不同地理区域举行了四场会议。该数据集包括来自 38 个校准器的测量结果,其中 Tc 和 In 有 36 次校准,F 有 21 次校准。对于每种放射性核素,均在两种临床几何形状下测量 3ml 的储备溶液:10ml 玻璃小瓶和 10ml 注射器。初始活度通常为 Tc 为 100MBq,In 为 15MBq,F 为 115MBq。放射性溶液的质量活度的参考值是通过在 JRC 的放射性核素计量学实验室使用初级和次级标准化技术确定的。对于 Tc 和 F,比对的总体结果是令人满意的,因为大多数放射性核素校准器(>70%)的测量值与参考值的偏差在±5%以内。然而,一些设备的活度低估了 10-20%。相反,In 的测量受到源几何形状效应的强烈影响,这对测量的准确性产生了负面影响,特别是对于注射器样品。即使考虑了容器效应的制造商提供的校正和不确定度,仍观察到高达 72%的过高估计。该实验的结果鼓励医院在需要时采取纠正措施,以改进其设备的校准。