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首页> 外文期刊>International Journal of Epidemiology: Official Journal of the International Epidemiological Association >Power and sample size calculations for mendelian randomization studies using one genetic instrument
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Power and sample size calculations for mendelian randomization studies using one genetic instrument

机译:使用一种遗传仪器进行孟德尔随机研究的功效和样本大小计算

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摘要

Mendelian randomization, which is instrumental variable analysis using genetic variants as instruments, is an increasingly popular method of making causal inferences from observational studies. In order to design efficient Mendelian randomization studies, it is essential to calculate the sample sizes required. We present formulas for calculating the power of a Mendelian randomization study using one genetic instrument to detect an effect of a given size, and the minimum sample size required to detect effects for given levels of significance and power, using asymptotic statistical theory. We apply the formulas to some example data and compare the results with those from simulation methods. Power and sample size calculations using these formulas should be more straightforward to carry out than simulation approaches. These formulas make explicit that the sample size needed for Mendelian randomization study is inversely proportional to the square of the correlation between the genetic instrument and the exposure and proportional to the residual variance of the outcome after removing the effect of the exposure, as well as inversely proportional to the square of the effect size.
机译:孟德尔随机化是一种利用遗传变异作为工具进行的工具变量分析,是一种越来越流行的从观察性研究中进行因果推断的方法。为了设计有效的孟德尔随机研究,必须计算所需的样本量。我们提出了使用渐近统计理论,使用一种遗传仪器来检测给定大小的影响的孟德尔随机研究的功效的公式,以及在给定的显着性和功效水平下检测影响所需的最小样本量的公式。我们将公式应用于一些示例数据,并将结果与​​模拟方法的结果进行比较。与模拟方法相比,使用这些公式进行功效和样本数量计算应该更简单。这些公式明确表明,孟德尔随机研究所需的样本量与遗传仪器和暴露量之间的相关性平方成反比,与去除暴露量影响后结果的剩余方差成正比,并且成反比与效果大小的平方成正比。

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