Knee- and Ankle-Joint Torques Contribute to Controlling the Whole-Body Linear and Angular Momenta in the Single-Support Phase after Tripping during Gait
Author:
Affiliation:
1. Department of Human Sciences, Kanagawa University
2. Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo
3. Japan Women's College of Physical Education
Publisher
Japan Society of Physical Education, Health, and Sport Sciences
Subject
Modeling and Simulation
Link
https://www.jstage.jst.go.jp/article/ijshs/21/0/21_202305/_pdf
Reference30 articles.
1. Bennett, B. C., Russell, S. D., Sheth, P., and Abel, M. F. (2010). Angular momentum of walking at different speeds. Hum. Mov. Sci., 29: 114-124.
2. Dumas, R., Cheze, L., and Verriest, J. (2007a). Adjustments to McConville et al. and Young et al. body segment inertial parameters. J. Biomech., 40: 543-553.
3. Dumas, R., Cheze, L., and Verriest, J. (2007b). Corrigendum to “Adjustments to McConville et al. and Young et al. body segment inertial parameters” [J. Biomech. 40 (2007) 543-553]. J. Biomech., 40: 1651-1652.
4. Eng, J. J., Winter, D. A., and Patla, A. E. (1994). Strategies for recovery from a trip in early and late swing during human walking. Exp. Brain Res., 102: 339-349.
5. Francis, C. A., Lenz, A. L., Lenhart, R. L., and Thelen, D. G. (2013). The modulation of forward propulsion, vertical support, and center of pressure by the plantarflexors during human walking. Gait Posture, 38: 993-997.
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1. Torque modulation mechanism of the knee joint during balance recovery;Computers in Biology and Medicine;2024-06
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