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首页> 外文期刊>Journal of the American statistical association >Multiple Testing in a Two-Stage Adaptive Design With Combination Tests Controlling FDR
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Multiple Testing in a Two-Stage Adaptive Design With Combination Tests Controlling FDR

机译:具有控制FDR的组合测试的两阶段自适应设计中的多重测试

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Testing multiple null hypotheses in two stages to decide which of these can be rejected or accepted at the first stage and which should be followed up for further testing having had additional observations is of importance in many scientific studies. We develop two procedures, each with two different combination functions, Fisher's and Simes', to combine p-values from two stages, given prespecified boundaries on the first-stage p-values in terms of the false discovery rate (FDR) and controlling the overall FDR at a desired level. The FDR control is proved when the pairs of first- and second-stage p-values are independent and those corresponding to the null hypotheses are identically distributed as a pair (p1, p2) satisfying the p-clud property. We did simulations to show that (1) our two-stage procedures can have significant power improvements over the first-stage Benjamini-Hochberg (BH) procedure compared to the improvement offered by the ideal BH procedure that one would have used had the second stage data been available for all the hypotheses, and can continue to control the FDR under some dependence situations, and (2) can offer considerable cost savings compared to the ideal BH procedure. The procedures are illustrated through a real gene expression data. Supplementary materials for this article are available online.
机译:在许多科学研究中,分两个阶段测试多个无效假设,以决定其中哪个可以在第一阶段被拒绝或接受,以及应该跟进哪些进一步假设以进行进一步测试。我们开发了两个程序,每个程序具有两个不同的组合函数,即Fisher和Simes,以组合来自两个阶段的p值,并根据错误发现率(FDR)在第一阶段p值上预先指定了边界,并控制整体FDR处于所需水平。当第一阶段和第二阶段的p值对是独立的,并且对应于原假设的p值作为满足p-clud属性的对(p1,p2)相同分布时,证明了FDR控制。我们进行了仿真,结果表明:(1)与第一阶段的Benjamini-Hochberg(BH)过程相比,我们的两阶段过程可以显着提高功耗,而第二阶段则可以使用理想的BH过程提供的改进。所有假设的数据都可用,并且可以在某些依赖情况下继续控制FDR,并且(2)与理想的BH程序相比可以节省大量成本。该过程通过真实的基因表达数据进行说明。可在线获得本文的补充材料。

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