Kreg G. Gruben
Affiliations: | University of Wisconsin, Madison, Madison, WI |
Area:
Neuroscience Biology, General Biophysics, RecreationGoogle:
"Kreg Gruben"Mean distance: 35622
Children
Sign in to add traineeRobert S. Giachetti | grad student | 2008 | UW Madison |
Matthew W. Schmidt | grad student | 2008 | UW Madison |
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Publications
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Sugimoto Dimitrova R, Shiozawa K, Gruben KG, et al. (2024) Frequency-domain patterns in foot-force line-of-action: an emergent property of standing balance control. Journal of Neurophysiology |
Shiozawa K, Sugimoto Dimitrova R, Gruben KG, et al. (2024) Human foot force suggests different balance control between younger and older adults. Journal of Neurophysiology |
Bartloff JN, Gruben KG, Grove CR. (2024) Reliability and validity of the force intersection point in the assessment of human quiet standing balance. Human Movement Science. 96: 103239 |
Bartloff JN, Ochs WL, Nichols KM, et al. (2024) Frequency-dependent behavior of paretic and non-paretic leg force during standing post stroke. Journal of Biomechanics. 164: 111953 |
Yamagata M, Gruben K, Falaki A, et al. (2020) Biomechanics of Vertical Posture and Control with Referent Joint Configurations. Journal of Motor Behavior. 1-11 |
Boehm WL, Nichols KM, Gruben KG. (2019) Frequency-dependent contributions of sagittal-plane foot force to upright human standing. Journal of Biomechanics. 83: 305-309 |
Boehm WL, Gruben KG. (2016) Post-Stroke Walking Behaviors Consistent with Altered Ground Reaction Force Direction Control Advise New Approaches to Research and Therapy. Translational Stroke Research. 7: 3-11 |
Gruben KG, Boehm WL. (2014) Ankle torque control that shifts the center of pressure from heel to toe contributes non-zero sagittal plane angular momentum during human walking. Journal of Biomechanics. 47: 1389-94 |
Gruben KG, Boehm WL. (2012) Mechanical interaction of center of pressure and force direction in the upright human. Journal of Biomechanics. 45: 1661-5 |
Gruben KG, Boehm WL. (2012) Force direction pattern stabilizes sagittal plane mechanics of human walking. Human Movement Science. 31: 649-59 |