Hamaker Ellen L, Kuiper Rebecca M, Grasman Raoul P P P
Methodology and Statistics, Faculty of Social and Behavioural Sciences, Utrecht University.
Psychological Methodology, University of Amsterdam.
Psychol Methods. 2015 Mar;20(1):102-16. doi: 10.1037/a0038889.
The cross-lagged panel model (CLPM) is believed by many to overcome the problems associated with the use of cross-lagged correlations as a way to study causal influences in longitudinal panel data. The current article, however, shows that if stability of constructs is to some extent of a trait-like, time-invariant nature, the autoregressive relationships of the CLPM fail to adequately account for this. As a result, the lagged parameters that are obtained with the CLPM do not represent the actual within-person relationships over time, and this may lead to erroneous conclusions regarding the presence, predominance, and sign of causal influences. In this article we present an alternative model that separates the within-person process from stable between-person differences through the inclusion of random intercepts, and we discuss how this model is related to existing structural equation models that include cross-lagged relationships. We derive the analytical relationship between the cross-lagged parameters from the CLPM and the alternative model, and use simulations to demonstrate the spurious results that may arise when using the CLPM to analyze data that include stable, trait-like individual differences. We also present a modeling strategy to avoid this pitfall and illustrate this using an empirical data set. The implications for both existing and future cross-lagged panel research are discussed.
许多人认为交叉滞后面板模型(CLPM)克服了与使用交叉滞后相关性相关的问题,后者是研究纵向面板数据中因果影响的一种方式。然而,本文表明,如果构念的稳定性在某种程度上具有类似特质、时间不变的性质,CLPM的自回归关系就无法充分考虑到这一点。因此,用CLPM获得的滞后参数并不能代表随时间变化的实际个体内部关系,这可能导致关于因果影响的存在、主导性和符号的错误结论。在本文中,我们提出了一种替代模型,该模型通过纳入随机截距将个体内部过程与稳定的个体间差异分开,并讨论了该模型与包含交叉滞后关系的现有结构方程模型之间的关系。我们推导了CLPM的交叉滞后参数与替代模型之间的分析关系,并通过模拟展示了使用CLPM分析包含稳定的、类似特质的个体差异的数据时可能出现的虚假结果。我们还提出了一种避免此陷阱的建模策略,并使用一个实证数据集进行说明。同时讨论了对现有和未来交叉滞后面板研究的影响。