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Resampling-based and other multiple testing strategies with application to combination drug trials with factorial designs

机译:基于重采样的和其他多种测试策略,适用于具有析因设计的组合药物试验

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摘要

The problem of detecting all effective and superior combinations in a factorial drug efficacy trial is stated in terms of two hypothesis families, full and reduced. The reduced problem formulation allows identification of all simultaneously effective and superior combinations. The full formulation allows individual detection of the efficacy and superiority of combinations resulting in more detailed conclusions. While the full hypothesis family deals with simpler parameters, the true mean effect differences, it has three times as many hypotheses as the reduced family. The reduced family is comprised of hypotheses concerning a gain-parameter, which is defined as the minimum of the true mean differences and leading to a fairly complicated structure. For each problem formulation, Holm's, Hochberg's and two resampling approaches are studied with respect to strong control of overall error rate and several power measures. Holm's and Hochberg's approaches are recommended for the reduced family, while the step-down resampling approach is recommended for the full hypothesis family. Moreover, the correct problem formulation is of great importance, because if the sample size is not sufficient there is a high potential for lack of power associated with the full problem due to a large number of hypotheses.
机译:在阶乘药物功效试验中检测所有有效和优良组合的问题是根据两个假设家族(完整和简化)提出的。减少问题的表述使得可以识别所有同时有效和​​优越的组合。完整的配方可单独检测组合的功效和优越性,从而得出更详细的结论。完整的假设族处理的参数较为简单,但真实的均值效应有所不同,但其假设数量是简化族的三倍。精简族由关于增益参数的假设组成,该假设被定义为真实均值差的最小值,并导致结构相当复杂。对于每种问题公式,都针对整体错误率的严格控制和几种功率测量方法,研究了霍尔姆(Holm)方法,霍赫伯格(Hochberg)方法和两种重采样方法。对于简化的家庭,建议采用Holm和Hochberg的方法,而对于整个假设家庭,建议采用逐步降低采样的方法。而且,正确的问题表述非常重要,因为如果样本量不足,由于大量的假设,很可能会缺乏与整个问题相关的功效。

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