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首页> 外文期刊>Nuclearmedicine >BeO-OSL detectors for dose measurements in cell cultures.
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BeO-OSL detectors for dose measurements in cell cultures.

机译:BeO-OSL检测器,用于细胞培养中的剂量测量。

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Aim: The absorbed dose is an important parameter in experiments involving irradiation of cells in vitro with unsealed radionuclides. Typically, this is estimated with a model calculation, although the results thus obtained cannot be verified. Generally used real-time measurement methods are not applicable in this setting. A new detector material with in vitro suitability is the subject of this work. Methods: Optically-stimulated luminescence (OSL) dosimeters based on beryllium oxide (BeO) were used for dose measurement in cell cultures exposed to unsealed radionuclides. Their qualitative properties (e. g. energy-dependent count rate sensitivity, fading, contamination by radioactive liquids) were determined and compared to the results of a Monte Carlo simulation (using AMOS software). OSL dosimeters were tested in common cell culture setups with a known geometry. Results: Dose reproducibility of the OSL dosimeters was +/-1.5%. Fading at room temperature was 0.07% per day. Dose loss (optically-stimulated deletion) under ambient lighting conditions was 0.5% per minute. The Monte Carlo simulation for the relative sensitivity at different beta energies provided corresponding results to those obtained with the OSL dosimeters. Dose profile measurements using a 6 well plate and 14 ml PP tube showed that the geometry of the cell culture vessel has a marked influence on dose distribution with 188Re. Conclusion: A new dosimeter system was calibrated with beta-emitters of different energy. It turned out as suitable for measuring dose in liquids. The dose profile measurements obtained are suitably precise to be used as a check against theoretical dose calculations.
机译:目的:在涉及用未密封的放射性核素体外照射细胞的实验中,吸收剂量是重要参数。通常,这是通过模型计算来估计的,尽管无法验证由此获得的结果。通常使用的实时测量方法不适用于此设置。具有体外适用性的新型检测器材料是这项工作的主题。方法:基于氧化铍(BeO)的光刺激发光(OSL)剂量计用于暴露于未密封放射性核素的细胞培养物中的剂量测量。确定它们的定性性质(例如,与能量有关的计数率敏感性,褪色,放射性液体的污染),并将其与蒙特卡罗模拟的结果(使用AMOS软件)进行比较。 OSL剂量计在具有已知几何形状的常见细胞培养装置中进行了测试。结果:OSL剂量计的剂量重现性为+/- 1.5%。室温下每天褪色为0.07%。在环境光照条件下的剂量损失(光学刺激的缺失)为每分钟0.5%。蒙特卡罗模拟法在不同β能量下的相对灵敏度提供了与OSL剂量计所获得的结果相对应的结果。使用6孔板和14 ml PP管进行剂量分布测量显示,细胞培养容器的几何形状对188Re剂量分布具有显着影响。结论:用不同能量的β-发射器校准了一个新的剂量计系统。事实证明它适合于测量液体中的剂量。所获得的剂量分布测量值非常精确,可以用作对理论剂量计算的检查。

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