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首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Biological effectiveness of isolated short electron tracks: V79-4 cell inactivation following low dose-rate irradiation with Al(K) ultrasoft X-rays.
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Biological effectiveness of isolated short electron tracks: V79-4 cell inactivation following low dose-rate irradiation with Al(K) ultrasoft X-rays.

机译:分离的短电子迹线的生物有效性:用Al(K)超软X射线低剂量率照射后V79-4细胞失活。

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摘要

PURPOSE: To investigate the biological effect of single, isolated, short electron tracks (<70 nm) relevant to practical human exposures to low-linear energy transfer radiation. MATERIALS AND METHODS: An irradiation rig was constructed that allowed environmentally controlled, protracted irradiations with an individually prescribed dose to up to 20 samples over a period of days. Inactivation of V79-4 mammalian cells by Al(K) ultrasoft X-rays was studied at high and low dose-rates with a maximum exposure time of 42 h. RESULTS: A significant increase in clonogenic survival was observed at the higher doses when the exposure time was increased from <6 min to 21 h, with no further increase observed for 42-h exposures. Despite the short range of the low-energy electrons produced (<70 nm), significant cell inactivation was observed for these low dose-rate exposures. CONCLUSIONS: The results are consistent with the hypothesis that even individual tracks can be biologically effective.
机译:目的:研究单个,孤立的,短电子迹线(<70 nm)的生物学效应,该电子迹线与人类实际暴露于低能量转移的辐射有关。材料与方法:建造了一个辐照装置,可以在几天内对环境进行控制,长时间照射,并按个别规定的剂量照射多达20个样品。 Al(K)超软X射线对V79-4哺乳动物细胞的灭活作用在高和低剂量率下进行,最大暴露时间为42 h。结果:当暴露时间从<6分钟增加到21小时时,高剂量时克隆形成存活率显着增加,而42小时暴露则没有进一步增加。尽管产生的低能电子范围很短(<70 nm),但对于这些低剂量率的暴露,仍观察到了明显的细胞失活。结论:结果与这样的假设是一致的,即即使单独的轨道也可以在生物学上有效。

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