Abstract
We are motivated by a study that seeks to better understand the dynamic relationship between muscle activation and paw position during locomotion. For each gait cycle in this experiment, activation in the biceps and triceps is measured continuously and in parallel with paw position as a mouse trotted on a treadmill. We propose an innovative general regression method that draws from both ordinary differential equations and functional data analysis to model the relationship between these functional inputs and responses as a dynamical system that evolves over time. Specifically, our model addresses gaps in both literatures and borrows strength across curves estimating ODE parameters across all curves simultaneously rather than separately modeling each functional observation. Our approach compares favorably to related functional data methods in simulations and in cross-validated predictive accuracy of paw position in the gait data. In the analysis of the gait cycles, we find that paw speed and position are dynamically influenced by inputs from the biceps and triceps muscles and that the effect of muscle activation persists beyond the activation itself.
Funding Statement
JW and JG were supported in part by the National Institute of Neurological Disorders and Stroke of the National Institutes of Health under award number R01NS097423 (PI: JG).
BS was supported by the National Institute of Neurological Disorders and Stroke of the National Institutes of Health under award number R01NS129576 (PI: BS).
EK was supported by a Postdoctoral Fellowship from the Natural Sciences and Engineering Research Council of Canada.
Acknowledgments
The authors would like to thank the anonymous referees and the Editor for their constructive comments that improved the quality of this paper.
Citation
Julia Wrobel. Britton Sauerbrei. Eric A. Kirk. Jian-Zhong Guo. Adam Hantman. Jeff Goldsmith. "Modeling trajectories using functional linear differential equations." Ann. Appl. Stat. 18 (4) 3425 - 3443, December 2024. https://doi.org/10.1214/24-AOAS1943
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