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使用贝叶斯统计决策理论优化试点试验和确定性试验项目中的错误率。

Optimising error rates in programmes of pilot and definitive trials using Bayesian statistical decision theory.

作者信息

Wilson Duncan T, Hall Andrew, Brown Julia M, Walwyn Rebecca Ea

机构信息

Leeds Institute of Clinical Trials Research, University of Leeds, UK.

出版信息

Stat Methods Med Res. 2025 Jun;34(6):1162-1177. doi: 10.1177/09622802251322987. Epub 2025 Mar 31.

Abstract

Pilot trials are often conducted in advance of definitive trials to assess their feasibility and to inform their design. Although pilot trials typically collect primary endpoint data, preliminary tests of effectiveness have been discouraged given their typically low power. Power could be increased at the cost of a higher type I error rate, but there is little methodological guidance on how to determine the optimal balance between these operating characteristics. We consider a Bayesian decision-theoretic approach to this problem, introducing a utility function and defining an optimal pilot and definitive trial programme as that which maximises expected utility. We base utility on changes in average primary outcome, the cost of sampling, treatment costs, and the decision-maker's attitude to risk. We apply this approach to re-design OK-Diabetes, a pilot trial of a complex intervention with a continuous primary outcome with known standard deviation. We then examine how optimal programme characteristics vary with the parameters of the utility function. We find that the conventional approach of not testing for effectiveness in pilot trials can be considerably sub-optimal.

摘要

先导试验通常在确定性试验之前进行,以评估其可行性并为试验设计提供信息。尽管先导试验通常会收集主要终点数据,但鉴于其通常较低的检验效能,有效性的初步检验一直不被提倡。可以以更高的I型错误率为代价来提高检验效能,但对于如何在这些操作特征之间确定最佳平衡,几乎没有方法学上的指导。我们考虑用贝叶斯决策理论方法来解决这个问题,引入一个效用函数,并将最优的先导试验和确定性试验方案定义为能使预期效用最大化的方案。我们将效用基于平均主要结局的变化、抽样成本、治疗成本以及决策者对风险的态度。我们将这种方法应用于重新设计OK-糖尿病试验,这是一项针对具有连续主要结局且标准差已知的复杂干预措施的先导试验。然后,我们研究最优方案特征如何随效用函数的参数变化。我们发现,在先导试验中不进行有效性检验的传统方法可能会相当次优。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0382/12209550/94bf34165684/10.1177_09622802251322987-fig1.jpg

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