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Comparison of dose distribution of ionizing radiation in a water phantom with frequency of cytogenetic damage in a human bronchial cells

机译:一种人体支气管细胞中细胞骨损伤频率水体模子中电离辐射剂量分布的比较

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In this study we compare dose distribution of photon and electron radiation in a water phantom with a frequency of occurrence of apoptotic and micronucleated cells from human bronchial BEAS-2B and lung cancer AS49 cell lines. Formation of micronuclei and apoptotic like bodies were evaluated by the cytokinesis-block micronucleus test. Measurements were performed on a five depths (3-20 cm) in a water phantom. Cells were irradiated in a beam axis or beyond field. As the irradiation source, a linear accelerator was used. Results indicate discrepancy between physical dose distribution observed on different depths in a water environment and biological effects (frequency of apoptosis and micronuclei formation). This discrepancy is specially significant for cells placed outside the field during exposure to radiation. Evaluation of these effects could be useful for modeling low-dose radiation risk and for radiotherapy protocols.
机译:在这项研究中,我们将光子和电子辐射的剂量分布与来自人支气管BEA-2B和肺癌AS49细胞的凋亡和微核细胞发生的凋亡和微核细胞的发生频率。通过细胞因子嵌段微核试验评估微核和凋亡凋亡的体。在水体幻影中的五个深度(3-20cm)上进行测量。在梁轴或超出场中照射细胞。作为照射源,使用线性加速器。结果表明在水环境中不同深度观察到的物理剂量分布与生物学效应(细胞凋亡频率和微核形成)的差异。这种差异对于在暴露于辐射期间放置在场外的细胞是特别的显着性。对这些效果的评估可用于模拟低剂量辐射风险和放射治疗方案。

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