在 AFT 模型中使用 X 模型山寨版进行高维受控变量选择

IF 1 4区 数学 Q3 STATISTICS & PROBABILITY
Baihua He, Di Xia, Yingli Pan
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引用次数: 0

摘要

可解释性和稳定性是统计中应用高维数据所需的两个重要特征。虽然前者在一定程度上得到了许多现有预测方法的青睐,但后者在控制错误特征发现率的意义上仍有很大欠缺。在加速失效时间模型下,本文介绍了一种受控变量选择方法,该方法具有模型-X山寨版的一般框架,可用于处理高维数据。我们提供了渐近错误发现率(FDR)控制的理论依据。由于能在保持预测能力的同时对 FDR 进行强有力的控制,所提出的方法引起了极大的兴趣。我们通过几个模拟示例来评估有限样本的性能,以及所需的可解释性和稳定性。分析了急性髓性白血病研究的真实数据示例,以证明所提方法在实践中的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

High dimensional controlled variable selection with model-X knockoffs in the AFT model

High dimensional controlled variable selection with model-X knockoffs in the AFT model

Interpretability and stability are two important characteristics required for the application of high dimensional data in statistics. Although the former has been favored by many existing forecasting methods to some extent, the latter in the sense of controlling the fraction of wrongly discovered features is still largely underdeveloped. Under the accelerated failure time model, this paper introduces a controlled variable selection method with the general framework of Model-X knockoffs to tackle high dimensional data. We provide theoretical justifications on the asymptotic false discovery rate (FDR) control. The proposed method has attracted significant interest due to its strong control of the FDR while preserving predictive power. Several simulation examples are conducted to assess the finite sample performance with desired interpretability and stability. A real data example from Acute Myeloid Leukemia study is analyzed to demonstrate the utility of the proposed method in practice.

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来源期刊
Computational Statistics
Computational Statistics 数学-统计学与概率论
CiteScore
2.90
自引率
0.00%
发文量
122
审稿时长
>12 weeks
期刊介绍: Computational Statistics (CompStat) is an international journal which promotes the publication of applications and methodological research in the field of Computational Statistics. The focus of papers in CompStat is on the contribution to and influence of computing on statistics and vice versa. The journal provides a forum for computer scientists, mathematicians, and statisticians in a variety of fields of statistics such as biometrics, econometrics, data analysis, graphics, simulation, algorithms, knowledge based systems, and Bayesian computing. CompStat publishes hardware, software plus package reports.
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