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IEEE Transactions on Neural Systems and Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society|September 6, 2024
Real-Time Calibration-Free Musculotendon Kinematics for Neuromusculoskeletal ModelsBradley M Cornish, Laura E Diamond, David J Saxby, et al.
Journal of Biomechanics|June 19, 2026
A neural network for predicting knee contact forces from clinic-friendly dataYumei Sun, Claudio Pizzolato, Laura E Diamond, et al.
Journal of Strength and Conditioning Research|July 4, 2019
Load-Carriage Conditioning Elicits Task-Specific Physical and Psychophysical Improvements in MalesJodie A Wills, David J Saxby, Daniel J Glassbrook, et al.
Life (Basel, Switzerland)|July 27, 2022
Effects of Footwear on Anterior Cruciate Ligament Forces during Landing in Young Adult FemalesRiad Akhundov, Adam L Bryant, Tim Sayer, et al.
IEEE Transactions on Neural Systems and Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society|April 25, 2017
Biofeedback for Gait Retraining Based on Real-Time Estimation of Tibiofemoral Joint Contact ForcesClaudio Pizzolato, Monica Reggiani, David J Saxby, et al.
Frontiers in Sports and Active Living|November 25, 2022
Semitendinosus muscle morphology in relation to surface electrode placement in anterior cruciate ligament reconstructed and contralateral legsAdam Kositsky, Rod S Barrett, William du Moulin, et al.
The Journal of Experimental Biology|February 15, 2019
Development of a deep neural network for automated electromyographic pattern classificationRiad Akhundov, David J Saxby, Suzi Edwards, et al.
Osteoarthritis and Cartilage|March 5, 2024
Hip contact forces can be predicted with a neural network using only synthesised key points and electromyography in people with hip osteoarthritisBradley M Cornish, Claudio Pizzolato, David J Saxby, et al.
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