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Journal of Biomechanics|March 10, 2024
Jumping towards field-based ground reaction force estimation and assessment with OpenCapJasper Verheul, Mark A Robinson, Sophie Burton
Journal of Sports Sciences|November 15, 2024
Forces experienced at different levels of the musculoskeletal system during horizontal decelerationsJasper Verheul, Damian Harper, Mark A Robinson
Medical Engineering & Physics|March 3, 2020
A neural network method to predict task- and step-specific ground reaction force magnitudes from trunk accelerations during running activitiesMark Pogson, Jasper Verheul, Mark A Robinson, et al.
Journal of Science and Medicine in Sport|December 31, 2018
Whole-body biomechanical load in running-based sports: The validity of estimating ground reaction forces from segmental accelerationsJasper Verheul, Warren Gregson, Paulo Lisboa, et al.
Journal of Science and Medicine in Sport|August 26, 2019
Identifying generalised segmental acceleration patterns that contribute to ground reaction force features across different running tasksJasper Verheul, John Warmenhoven, Paulo Lisboa, et al.
IEEE Transactions on Bio-Medical Engineering|August 4, 2020
Multidimensional Ground Reaction Forces and Moments From Wearable Sensor Accelerations via Deep LearningWilliam R Johnson, Ajmal Mian, Mark A Robinson, et al.
Journal of Biomechanics|December 19, 2025
Markerless motion capture for running: validity and reliability of whole-body, joint, and muscle kinematicsJasper Verheul, Owain Hughes, Luke Hitchens, et al.
IEEE Transactions on Bio-Medical Engineering|September 29, 2022
A Hybrid Method for Ultrasound-Based Tracking of Skeletal Muscle ArchitectureJasper Verheul, Sang-Hoon Yeo
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