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Mark de Zee
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Journal Articles
- 2023
- [j7]Bo Eitel Seiferheld, Jeppe Frost, Thorstein Brynildsen Østergaard, Mathias Sønder Krog, Kent Kongsøre Klitgaard, Mark de Zee:
Full-Body Kinematics and Vertical Ground Reaction Forces in Elite Ten-Pin Bowling: A Field Study. Sensors 23(19): 8284 (2023) - 2021
- [j6]Kent K. Klitgaard, Hans Rosdahl, René B. K. Brund, John Hansen, Mark de Zee:
Characterization of Leg Push Forces and Their Relationship to Velocity in On-Water Sprint Kayaking. Sensors 21(20): 6790 (2021) - [j5]René B. K. Brund, Rasmus Waagepetersen, Rasmus O. Nielsen, John Rasmussen, Michael S. Nielsen, Christian H. Andersen, Mark de Zee:
How Precisely Can Easily Accessible Variables Predict Achilles and Patellar Tendon Forces during Running? Sensors 21(21): 7418 (2021) - 2019
- [j4]Jason M. Konrath, Angelos Karatsidis, H. Martin Schepers, Giovanni Bellusci, Mark de Zee, Michael Skipper Andersen:
Estimation of the Knee Adduction Moment and Joint Contact Force during Daily Living Activities Using Inertial Motion Capture. Sensors 19(7): 1681 (2019) - 2017
- [j3]Angelos Karatsidis, Giovanni Bellusci, H. Martin Schepers, Mark de Zee, Michael Skipper Andersen, Peter H. Veltink:
Estimation of Ground Reaction Forces and Moments During Gait Using Only Inertial Motion Capture. Sensors 17(1): 75 (2017) - 2011
- [j2]Anders Sandholm, Cédric Schwartz, Nicolas Pronost, Mark de Zee, Michael Voigt, Daniel Thalmann:
Evaluation of a geometry-based knee joint compared to a planar knee joint. Vis. Comput. 27(2): 161-171 (2011) - 2006
- [j1]Michael Damsgaard, John Rasmussen, Søren Tørholm Christensen, Egidijus Surma, Mark de Zee:
Analysis of musculoskeletal systems in the AnyBody Modeling System. Simul. Model. Pract. Theory 14(8): 1100-1111 (2006)
Conference and Workshop Papers
- 2017
- [c2]Salheddine Ayad, Abdelkader Megueni, Mohammed Ayad, Henrik Schiøler, Mark de Zee, Lotte N. S. Andreasen Struijk:
A control approach for a robotic ground walking platform. ECAI 2017: 1-4 - 2009
- [c1]Mark de Zee, John Rasmussen:
Using Musculoskeletal Modeling for Estimating the Most Important Muscular Output - Force. 3DPH 2009: 62-70
Coauthor Index
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