Multi-arm covariate-adaptive randomization

被引:0
作者
Feifang Hu
Xiaoqing Ye
Li-Xin Zhang
机构
[1] The George Washington University,Department of Statistics
[2] Renmin University of China,Institute of Statistics and Big Data
[3] Zhejiang University,School of Mathematical Sciences
来源
Science China Mathematics | 2023年 / 66卷
关键词
multiple treatment; balancing covariate; clinical trial; marginal balance; Markov chain; Hu and Hu’s general procedure; Pocock and Simon’s procedure; stratified permuted block design; 60F05; 60F10; 60F15; 62G10;
D O I
暂无
中图分类号
学科分类号
摘要
Simultaneously investigating multiple treatments in a single study achieves considerable efficiency in contrast to the traditional two-arm trials. Balancing treatment allocation for influential covariates has become increasingly important in today’s clinical trials. The multi-arm covariate-adaptive randomized clinical trial is one of the most powerful tools to incorporate covariate information and multiple treatments in a single study. Pocock and Simon’s procedure has been extended to the multi-arm case. However, the theoretical properties of multi-arm covariate-adaptive randomization have remained largely elusive for decades. In this paper, we propose a general framework for multi-arm covariate-adaptive designs which also includes the two-arm case, and establish the corresponding theory under widely satisfied conditions. The theoretical results provide new insights into the balance properties of covariate-adaptive randomization procedures and make foundations for most existing statistical inferences under two-arm covariate-adaptive randomization. Furthermore, these open a door to study the theoretical properties of statistical inferences for clinical trials based on multi-arm covariate-adaptive randomization procedures.
引用
收藏
页码:163 / 190
页数:27
相关论文
共 110 条
[21]  
Canay I A(2015)Testing hypotheses of covariate-adaptive randomized clinical trials J Amer Statist Assoc 110 669-1497
[22]  
Shaikh A M(2020)Statistical inference for covariate-adaptive randomization procedures J Amer Statist Assoc 115 1488-1567
[23]  
Bugni F A(2010)Exact properties of Efron’s biased coin randomization procedure Ann Statist 38 1546-1594
[24]  
Canay I A(2010)Interaction of developmental transcription factor HOXC11 with steroid receptor coactivator SRC-1 mediates resistance to endocrine therapy in breast cancer Cancer Res 70 1585-516
[25]  
Shaikh A M(2020)TATTON: A multi-arm, phase Ib trial of osimertinib combined with selumetinib, savolitinib, or durvalumab in EGFR-mutant lung cancer Ann Oncology 31 507-214
[26]  
Ciolino J(2010)How to improve R&D productivity: The pharmaceutical industry’s grand challenge Nature Rev Drug Discov 9 203-115
[27]  
Zhao W(1975)Sequential treatment assignment with balancing for prognostic factors in the controlled clinical trial Biometrics 31 103-2256
[28]  
Palesch Y(2003)Novel designs for multi-arm clinical trials with survival outcomes with an application in ovarian cancer Stat Med 22 2239-366
[29]  
DiMasi J A(2016)Efficiencies of platform clinical trials: A vision of the future Clinical Trials 13 358-674
[30]  
Hansen R W(2002)The method of minimization for allocation to clinical trials: A review Control Clinical Trials 23 662-1476