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首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Modeling the rate of senescence: can estimated biological age predict mortality more accurately than chronological age?
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Modeling the rate of senescence: can estimated biological age predict mortality more accurately than chronological age?

机译:模拟衰老率:估计的生物年龄能否比按年龄的年龄更准确地预测死亡率?

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摘要

Biological age (BA) is useful for examining differences in aging rates. Nevertheless, little consensus exists regarding optimal methods for calculating BA. The aim of this study is to compare the predictive ability of five BA algorithms. The sample included 9,389 persons, aged 30-75 years, from National Health and Nutrition Examination Survey III. During the 18-year follow-up, 1,843 deaths were counted. Each BA algorithm was compared with chronological age on the basis of predictive sensitivity and strength of association with mortality. Results found that the Klemera and Doubal method was the most reliable predictor of mortality and performed significantly better than chronological age. Furthermore, when included with chronological age in a model, Klemera and Doubal method had more robust predictive ability and caused chronological age to no longer be significantly associated with mortality. Given the potential of BA to highlight heterogeneity, the Klemera and Doubal method algorithm may be useful for studying a number of questions regarding the biology of aging.
机译:生物年龄(BA)可用于检查衰老率的差异。然而,关于计算BA的最佳方法几乎没有共识。本研究的目的是比较五种BA算法的预测能力。样本包括来自国家健康与营养检查第三次调查的9389人,年龄在30-75岁之间。在18年的随访中,统计了1,843例死亡。根据预测的敏感性和与死亡的关联强度,将每个BA算法与按年龄进行的比较。结果发现,Klemera和Doubal方法是最可靠的死亡率预测指标,其性能明显优于按年龄排序的年龄。此外,在模型中将按时间顺序排列的年龄包括在内时,Klemera和Doubal方法具有更强的预测能力,并且使按时间顺序排列的年龄不再与死亡率显着相关。考虑到BA具有突出异质性的潜力,Klemera和Doubal方法算法可能有助于研究有关衰老生物学的许多问题。

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