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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 >Limits imposed by ionizing radiation on the long-term survival of trapped bacterial spores: beta radiation.
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Limits imposed by ionizing radiation on the long-term survival of trapped bacterial spores: beta radiation.

机译:电离辐射对捕获的细菌孢子的长期存活的限制:β辐射。

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PURPOSE: A model is presented for determining the survival time T(F) of a fraction F of a population of bacterial spores trapped within a fluid inclusion and subject to genetic damage from beta radiation. METHODS: The limiting factor to survival is the production of double-strand breaks (DSB) in the DNA resulting from single-track cleaving and from the cumulative effects of single-strand breaks (SSB) induced by the presence of ionizing radiation in the environment. The model considers the probability that radicals and ions formed by the passage of high-energy particles will interact with a DNA molecule and induce damage. RESULTS: The survival time T(F) for a fraction F of a trapped population is a weak function of both F and the length L in base pairs of the genome. For irradiation due to a beta source trapped with the spores within the inclusion, the survival time is also inversely proportional to the concentration of the radionuclide, the dominant factor in limiting survival time. CONCLUSIONS: The predictions of the model are consistent with measured DSB formation rates, the observed survival of trapped spores over time periods as long as 250 Ma, and track structure models which address low physical dose rates.
机译:目的:提出了一种模型,用于确定截留在流体包裹体中并受到β辐射的遗传损害的细菌孢子种群分数F的存活时间T(F)。方法:生存的限制因素是DNA中双链断裂(DSB)的产生,该断裂是由于单轨切割以及环境中电离辐射的存在引起的单链断裂(SSB)的累积效应所致。 。该模型考虑了由高能粒子通过而形成的自由基和离子与DNA分子相互作用并引起破坏的可能性。结果:被困种群的一部分F的生存时间T(F)是F和基因组碱基对中L长度的弱函数。对于由于β源被夹杂物内的孢子所捕获而进行的辐照,其存活时间也与放射性核素的浓度成反比,放射性核素的浓度是限制存活时间的主要因素。结论:该模型的预测与测得的DSB形成速率,在长达250 Ma的时间内观察到的被捕获孢子的存活率以及解决低物理剂量率的跟踪结构模型相一致。

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