Piovani Daniele, Sokou Rozeta, Tsantes Andreas G, Vitello Alfonso Stefano, Bonovas Stefanos
Department of Biomedical Sciences, Humanitas University, 20072 Pieve Emanuele, Milan, Italy.
IRCCS Humanitas Research Hospital, 20089 Rozzano, Milan, Italy.
Healthcare (Basel). 2023 Aug 10;11(16):2244. doi: 10.3390/healthcare11162244.
A large number of prediction models are published with the objective of allowing personalized decision making for diagnostic or prognostic purposes. Conventional statistical measures of discrimination, calibration, or other measures of model performance are not well-suited for directly and clearly assessing the clinical value of scores or biomarkers. Decision curve analysis is an increasingly popular technique used to assess the clinical utility of a prognostic or diagnostic score/rule, or even of a biomarker. Clinical utility is expressed as the net benefit, which represents the net balance of patients' benefits and harms and considers, implicitly, the consequences of clinical actions taken in response to a certain prediction score, rule, or biomarker. The net benefit is plotted against a range of possible exchange rates, representing the spectrum of possible patients' and clinicians' preferences. Decision curve analysis is a powerful tool for judging whether newly published or existing scores may truly benefit patients, and represents a significant advancement in improving transparent clinical decision making. This paper is meant to be an introduction to decision curve analysis and its interpretation for clinical investigators. Given the extensive advantages, we advocate applying decision curve analysis to all models intended for use in clinical practice.
大量预测模型被发表,目的是为诊断或预后目的提供个性化决策依据。传统的区分度、校准度统计指标或其他模型性能指标并不适合直接且清晰地评估评分或生物标志物的临床价值。决策曲线分析是一种越来越受欢迎的技术,用于评估预后或诊断评分/规则甚至生物标志物的临床效用。临床效用以净效益表示,净效益代表患者受益与伤害的净平衡,并隐含地考虑了针对特定预测评分、规则或生物标志物所采取临床行动的后果。净效益针对一系列可能的交换率绘制,这些交换率代表了患者和临床医生可能的偏好范围。决策曲线分析是判断新发表的或现有的评分是否真的能使患者受益的有力工具,代表了在改善透明临床决策方面的重大进展。本文旨在为临床研究人员介绍决策曲线分析及其解读。鉴于其诸多优点,我们提倡将决策曲线分析应用于所有旨在用于临床实践的模型。