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Paradoxical results of adaptive false discovery rate procedures in neuroimaging studies

机译:神经影像研究中自适应假发现率手术的矛盾结果

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摘要

Adaptive false discovery rate (FDR) procedures, which offer greater power than the original FDR procedure of Benjamini and Hochberg, are often applied to statistical maps of the brain. When a large proportion of the null hypotheses are false, as in the case of widespread effects such as cortical thinning throughout much of the brain, adaptive FDR methods can surprisingly reject more null hypotheses than not accounting for multiple testing at all— i.e., using uncorrected p-values. A straightforward mathematical argument is presented to explain why this can occur with the q-value method of Storey and colleagues, and a simulation study shows that it can also occur, to a lesser extent, with a two-stage FDR procedure due to Benjamini and colleagues. We demonstrate the phenomenon with reference to a published data set documenting cortical thinning in attention deficit/hyperactivity disorder. The paper concludes with recommendations for how to proceed when adaptive FDR results of this kind are encountered in practice.
机译:自适应错误发现率(FDR)程序通常提供给大脑的统计图,该程序比Benjamini和Hochberg的原始FDR程序具有更大的功能。当大部分无效假设为假时,例如在广泛的影响(例如整个大脑大部分区域的皮质变薄)的情况下,自适应FDR方法可以令人惊讶地拒绝更多的无效假设,而不是根本不考虑多重测试,即使用未校正的假设p值。提出了一个简单的数学论据来解释为什么用Storey及其同事的q值方法会发生这种情况,并且仿真研究表明,由于Benjamini和同事。我们通过参考已发表的数据集证明这一现象,该数据集记录了注意力不足/多动障碍中的皮质变薄。本文最后给出了在实践中遇到这种自适应FDR结果时如何进行的建议。

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