Bayesian Covariate-Dependent Circadian Modeling of Rest-Activity Rhythms
Abstract
We propose a Bayesian covariate-dependent anti-logistic circadian model for analyzing activity data collected via wrist-worn wearable devices. The proposed approach integrates covariates into the modeling of the amplitude and phase parameters, facilitating cohort-level analysis with enhanced flexibility and interpretability. To promote model sparsity, we employ an l_1-ball projection prior, enabling precise control over complexity while identifying significant predictors. We assess performances on simulated data and then apply the method to real-world actigraphy data from people with epilepsy. Our results demonstrate the model's effectiveness in uncovering complex relationships among demographic, psychological, and medical factors influencing rest-activity rhythms, offering insights for personalized clinical assessments and healthcare interventions.
Keywords
Cite
@article{arxiv.2502.03273,
title = {Bayesian Covariate-Dependent Circadian Modeling of Rest-Activity Rhythms},
author = {Beniamino Hadj-Amar and Vaishnav Krishnan and Marina Vannucci},
journal= {arXiv preprint arXiv:2502.03273},
year = {2025}
}