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Modélisation par équations structurelles (MES)×Modélisation multiniveau×
DomaineStatistiqueStatistiques de recherche
FamilleLatent structureProcess / pipeline
Année d'origine19701992
Auteur d'origineKarl Jöreskog (LISREL framework, 1970s)Anthony Bryk and Stephen Raudenbush
TypeLatent variable / causal modelingMethod
Source fondatriceHair, J. F., Black, W. C., Babin, B. J. & Anderson, R. E. (2019). Multivariate Data Analysis (8th ed.). Cengage Learning. ISBN: 978-1473756540Bryk, A. S., & Raudenbush, S. W. (1992). Hierarchical Linear Models: Applications and Data Analysis Methods. SAGE Publications. DOI ↗
AliasYapısal Eşitlik Modellemesi (SEM), structural equation modelling, covariance structure analysis, latent variable modelingHLM, mixed-effects models, random effects models, MLM
Apparentées53
RésuméStructural equation modeling is a multivariate statistical framework that simultaneously estimates a measurement model — relating observed indicators to latent constructs — and a structural model specifying directional or reciprocal relationships among those constructs. Rooted in the LISREL tradition developed by Karl Jöreskog in the 1970s, SEM is the standard tool for testing complex theoretical models in the social, behavioural, and management sciences.Multilevel modeling (also called hierarchical linear modeling, mixed-effects modeling) is a statistical framework for analyzing data organized in nested or clustered structures—students within schools, patients within hospitals, repeated measures within individuals. Developed by Bryk and Raudenbush (1992), it accounts for dependency among observations and partitions variance into levels (within-cluster and between-cluster), enabling valid inference and revealing context effects. Essential in education, medicine, organizational research, and any field where data have natural hierarchies.
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ScholarGateComparer des méthodes: SEM · Multilevel Modeling. Consulté le 2026-06-17 sur https://scholargate.app/fr/compare