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Sample size computation in phase II designs combining the A'Hern design and the Sargent and Goldberg design

机译:II期设计中的样本量计算结合了A'Hern设计和Sargent和Goldberg Design

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This work focuses on the modification of two classical phase II trials designs, the A'Hern design, a single-arm single-stage design, and the Sargent and Goldberg design introduced in the context of flexible screening designs. In the first part of the paper, we have proposed a drift-adjusted A'Hern design, a hybrid design combining the A'Hern design and the Sargent and Goldberg design. Indeed, classical single-arm phase II designs such as the A'Hern design are still widely used in oncology. Conducting randomized comparative phase II trials may be challenging in many settings due to the increased sample size and this despite larger type 1 errors. Randomized non-comparative phase II designs first introduced by Herson and Carter include a simultaneous randomized standard-treatment reference arm to detect any drift in the reference arm assumption, but the trial is analyzed against historical controls as if it were a single-arm study. However, not incorporating at all an internal control arm in the trial design has been criticized in the literature. Our new design takes into account the observed response rate in a non-comparative reference arm to reduce the trial's risk of a false-positive conclusion. In the second part, we have proposed an alternative strategy to determining the sample size of the screened selection design. The latter, introduced in recent years by Yap et al. and Wu et al., extended the Sargent and Goldberg design to include a comparison to a historical control. However, their sample size computations may have potential weaknesses, which motivated us to revisit the existing approaches. A detailed simulation study has been carried out to evaluate the operating characteristics of the drift-adjusted A'Hern design and the different sample size strategies of the screened selection designs.
机译:这项工作侧重于修改两个经典第二阶段试验设计,A'Hern设计,单臂单级设计,以及在灵活的筛选设计中引入的SARGENT和GOLDBERG设计。在本文的第一部分,我们提出了一种漂移调整的A'Hern设计,混合设计结合了A'Hern设计和Sargent和Goldberg设计。实际上,典型的单臂阶段II设计,例如A'hern Design仍然广泛用于肿瘤学。由于样品大小增加而导致的许多设置,进行随机对比期II试验可能是挑战性的,尽管较大的1次误差,但这是较大的。由Herson和Carter首次引入的随机非比较期II设计包括同时随机的标准治疗参考臂,以检测参考臂的假设中的任何漂移,但是对历史控制分析了试验,好像它是单臂研究一样。然而,在试验设计中的所有内部控制手臂上都不包含在文献中受到批评。我们的新设计考虑了非比较参考手臂中观察到的响应率,以减少试验的假冒结论的风险。在第二部分中,我们提出了确定屏蔽选择设计的样本大小的替代策略。后者,近年来介绍了YAP等人。和Wu等人,扩展了Sargent和Goldberg设计,包括与历史控制的比较。然而,它们的样本量计算可能具有潜在的弱点,这激励我们重新审视现有方法。已经进行了详细的仿真研究,以评估漂移调整的A'Hern设计的操作特性及筛选选择设计的不同样本策略。

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