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Publications by Terence Etchells
The Feasibility of Predicting Ground Reaction Forces During Running From a Trunk Accelerometry Driven Mass-Spring-Damper Model
PeerJ
Genetics
Molecular Biology
Biochemistry
Biological Sciences
Medicine
Agricultural
Neuroscience
Related publications
A General Relationship Links Gait Mechanics and Running Ground Reaction Forces
Journal of Experimental Biology
Evolution
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Insect Science
Molecular Biology
Systematics
Animal Science
Medicine
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Changes in Ground Reaction Forces, Joint Mechanics, and Stiffness During Treadmill Running to Fatigue
Applied Sciences (Switzerland)
Instrumentation
Materials Science
Fluid Flow
Engineering
Computer Science Applications
Process Chemistry
Transfer Processes
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Figure 10: Vertical Ground Reaction Forces Versus Stance Phase During Loose Sand and Solid Ground Running Trials.
Whole-Body Biomechanical Load in Running-Based Sports: The Validity of Estimating Ground Reaction Forces From Segmental Accelerations
Journal of Science and Medicine in Sport
Sports Medicine
Physical Therapy
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Orthopedics
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Rehabilitation
Ground Reaction Forces During the Biomechanical Gait Analysis in Children
International Journal of Advanced Engineering Research and Science
Ground Reaction Forces and Lower Extremity Kinematics When Running With Suppressed Arm Swing
Journal of Biomechanical Engineering
Biomedical Engineering
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Figure 6: Ground Reaction Forces.
Ground Reaction Forces and Plantar Pressure Distribution During Occasional Loaded Gait
Applied Ergonomics
Risk
Physical Therapy
Human Factors
Engineering
Reliability
Ergonomics
Sports Therapy
Safety
Quality
Rehabilitation
Figure 3: Representative Examples of the Trunk Accelerometry Fitting and GRF Prediction, and the Median RMSE Across Running Speeds.