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Predicting the effect of ionising radiation on biological populations: testing of a non-linear Leslie model applied to a small mammal population

机译:预测电离辐射对生物种群的影响:应用于小型哺乳动物种群的非线性莱斯利模型的测试

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The present work describes the application of a non-linear Leslie model for predicting the effects of ionising radiation on wild populations. The model assumes that, for protracted chronic irradiation, the effect-dose relationship is linear. In particular, the effects of radiation are modelled by relating the in-crease in the mortality rates of the individuals to the dose rates through a proportionality factor C. The model was tested using independent data and information from a series of experiments that were aimed at assessing the response to radiation of wild populations of meadow voles and whose results were described in the international literature. The comparison of the model results with the data selected from the above mentioned experiments showed that the model overestimated the detrimental effects of ra-diation on the size of irradiated populations when the values of C were within the range derived from the median lethal dose (L_(50)) for small mammals. The described non-linear model suggests that the non-expressed biotic potential of the species whose growth is limited by processes of environmental resis-tance, such as the competition among the individuals of the same or of different species for the exploitation of the available resources, can be a factor that determines a more effective response of population to the radiation effects.
机译:本工作描述了非线性莱斯利模型在预测电离辐射对野生种群影响方面的应用。该模型假设,对于长期的长期照射,效果-剂量关系是线性的。具体而言,通过将个体死亡率的增加与剂量率通过比例因子C关联起来来模拟辐射的影响。使用独立的数据和来自一系列旨在进行实验的信息来测试该模型评估草地田鼠野生种群对辐射的响应,其结果在国际文献中已有描述。模型结果与上述实验数据的比较表明,当C值在中值致死剂量(L_)范围内时,该模型高估了辐射对辐照种群大小的有害影响。 (50))用于小型哺乳动物。所描述的非线性模型表明,其生长受到环境抵抗过程限制的物种的非表达生物潜力,例如,相同或不同物种的个体之间为利用可用资源而进行的竞争可能是决定人口对辐射效应更有效响应的因素。

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