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Main Authors: Sale, Carter, Macpherson, Margaret C., Patil, Gaurav, Miles, Kelly, Kallen, Rachel W., Wallot, Sebastian, Richardson, Michael J.
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2604.01453
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author Sale, Carter
Macpherson, Margaret C.
Patil, Gaurav
Miles, Kelly
Kallen, Rachel W.
Wallot, Sebastian
Richardson, Michael J.
author_facet Sale, Carter
Macpherson, Margaret C.
Patil, Gaurav
Miles, Kelly
Kallen, Rachel W.
Wallot, Sebastian
Richardson, Michael J.
contents Advances in markerless pose estimation have made it possible to capture detailed human movement in naturalistic settings using standard video, enabling new forms of behavioral analysis at scale. However, the high dimensionality, noise, and temporal complexity of pose data raise significant challenges for extracting meaningful patterns of coordination and behavioral change. This paper presents a general-purpose analysis pipeline for human pose data, designed to support both linear and nonlinear characterizations of movement across diverse experimental contexts. The pipeline combines principled preprocessing, dimensionality reduction, and recurrence-based time series analysis to quantify the temporal structure of movement dynamics. To illustrate the pipeline's flexibility, we present three case studies spanning facial and full-body movement, 2D and 3D data, and individual versus multi-agent behavior. Together, these examples demonstrate how the same analytic workflow can be adapted to extract theoretically meaningful insights from complex pose time series.
format Preprint
id arxiv_https___arxiv_org_abs_2604_01453
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Nonlinear Methods for Analyzing Pose in Behavioral Research
Sale, Carter
Macpherson, Margaret C.
Patil, Gaurav
Miles, Kelly
Kallen, Rachel W.
Wallot, Sebastian
Richardson, Michael J.
Computer Vision and Pattern Recognition
Advances in markerless pose estimation have made it possible to capture detailed human movement in naturalistic settings using standard video, enabling new forms of behavioral analysis at scale. However, the high dimensionality, noise, and temporal complexity of pose data raise significant challenges for extracting meaningful patterns of coordination and behavioral change. This paper presents a general-purpose analysis pipeline for human pose data, designed to support both linear and nonlinear characterizations of movement across diverse experimental contexts. The pipeline combines principled preprocessing, dimensionality reduction, and recurrence-based time series analysis to quantify the temporal structure of movement dynamics. To illustrate the pipeline's flexibility, we present three case studies spanning facial and full-body movement, 2D and 3D data, and individual versus multi-agent behavior. Together, these examples demonstrate how the same analytic workflow can be adapted to extract theoretically meaningful insights from complex pose time series.
title Nonlinear Methods for Analyzing Pose in Behavioral Research
topic Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2604.01453