Englert Stefan, Kieser Meinhard
Institute of Medical Biometry and Informatics, University of Heidelberg, D-69120 Heidelberg, Germany.
Biometrics. 2012 Sep;68(3):886-92. doi: 10.1111/j.1541-0420.2011.01720.x. Epub 2011 Dec 7.
Phase II trials in oncology are usually conducted as single-arm two-stage designs with binary endpoints. Currently available adaptive design methods are tailored to comparative studies with continuous test statistics. Direct transfer of these methods to discrete test statistics results in conservative procedures and, therefore, in a loss in power. We propose a method based on the conditional error function principle that directly accounts for the discreteness of the outcome. It is shown how application of the method can be used to construct new phase II designs that are more efficient as compared to currently applied designs and that allow flexible mid-course design modifications. The proposed method is illustrated with a variety of frequently used phase II designs.
肿瘤学中的II期试验通常采用具有二元终点的单臂两阶段设计进行。目前可用的自适应设计方法是针对具有连续检验统计量的比较研究量身定制的。将这些方法直接应用于离散检验统计量会导致程序保守,从而导致检验效能损失。我们提出了一种基于条件误差函数原理的方法,该方法直接考虑了结果的离散性。展示了如何应用该方法来构建新的II期设计,这些设计与当前应用的设计相比更有效,并且允许灵活的中期设计修改。通过各种常用的II期设计对所提出的方法进行了说明。