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终身暴露于γ辐射的犬类寿命缩短的剂量率阈值证据。

Evidence of a Dose-Rate Threshold for Life Span Reduction of Dogs Exposed Lifelong to γ-Radiation.

作者信息

Cuttler Jerry M, Feinendegen Ludwig E, Socol Yehoshua

机构信息

Cuttler & Associates Inc, Vaughan, Ontario, Canada.

Nuclear Medicine Department, Heinrich-Heine University, Düsseldorf, Germany.

出版信息

Dose Response. 2018 Dec 26;16(4):1559325818820211. doi: 10.1177/1559325818820211. eCollection 2018 Oct-Dec.

Abstract

Our return to a study on dogs exposed lifelong to cobalt-60 γ-radiation was prompted by a comment that data in dog studies have large statistical errors due to the small number of dogs. We located an earlier article on the same study that had a better mortality curve for the dogs in each dose-rate group. The median life span of the dogs in each group was tabulated, and the standard error of each was calculated. No statistically significant shortening of median life span was observed for the lowest dose-rate group at any reasonable significance level ( value: .005-.05), whereas for dogs with higher irradiation rates, life span shortening was statistically significant at highest reasonable significance level ( value: .005). The results were entered on a graph of life span versus dose rate, assuming a threshold dose-response model. The fitted line indicates that the dose-rate threshold for γ-radiation induced life span reduction is about 600 mGy per year, which is close to the value we found previously. Making allowance for the calculated standard errors, we conclude that this threshold is in the range from 300 to 1100 mGy per year. This evidence is relevant for emergency measures actions (evacuation of residents) and for nuclear waste management.

摘要

我们重新开展一项针对终身暴露于钴 - 60γ辐射的犬类的研究,是因为有评论指出,由于犬只数量较少,犬类研究中的数据存在较大统计误差。我们找到了一篇关于同一研究的早期文章,其中每个剂量率组的犬类死亡率曲线更好。我们将每组犬类的中位寿命制成表格,并计算了每组的标准误差。在任何合理的显著性水平(p值:0.005 - 0.05)下,最低剂量率组均未观察到中位寿命有统计学意义的缩短,而对于辐射率较高的犬类,在最高合理显著性水平(p值:0.005)下,寿命缩短具有统计学意义。假设存在阈值剂量反应模型,将结果绘制在寿命与剂量率的图表上。拟合线表明,γ辐射诱导寿命缩短的剂量率阈值约为每年600毫戈瑞,这与我们之前发现的值相近。考虑到计算出的标准误差,我们得出该阈值在每年300至1100毫戈瑞的范围内。这一证据与应急措施行动(居民疏散)以及核废料管理相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b0b/6311660/9c3236451fa8/10.1177_1559325818820211-fig1.jpg

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