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Power and stability comparisons of multiple testing procedures with false discovery rate control

机译:具有错误发现率控制的多种测试程序的功率和稳定性比较

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High-throughput data analyses are widely used for examining differential gene expression, identifying single nucleotide polymorphisms, and detecting methylation loci. False discovery rate (FDR) has been considered a proper type I error rate to control for discovery-based high-throughput data analysis. Various multiple testing procedures have been proposed to control the FDR. The power and stability properties of some commonly used multiple testing procedures have not been extensively investigated yet, however. Simulation studies were conducted to compare power and stability properties of five widely used multiple testing procedures at different proportions of true discoveries for various sample sizes for both independent and dependent test statistics. Storey's two linear step-up procedures showed the best performance among all tested procedures considering FDR control, power, and variance of true discoveries. Leukaemia and ovarian cancer microarray studies were used to illustrate the power and stability characteristics of these five multiple testing procedures with FDR control.
机译:高通量数据分析广泛用于检查差异基因表达,鉴定单核苷酸多态性和检测甲基化位点。错误发现率(FDR)被认为是控制基于发现的高吞吐量数据分析的合适的I类错误率。已经提出了多种多样的测试程序来控制FDR。但是,尚未广泛研究某些常用的多种测试程序的功率和稳定性。进行了仿真研究,以比较在不同样本量的真实发现的不同比例下,五种广泛使用的多种测试程序的功率和稳定性,以进行独立和相关的测试统计。考虑到FDR控制,功率和真实发现的差异,Storey的两个线性升压过程在所有测试过程中表现出最佳性能。白血病和卵巢癌微阵列研究用于说明这五种采用FDR控制的多重测试程序的功效和稳定性特征。

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