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Restoring prolonged standing via functional electrical stimulation after spinal cord injury: A systematic review of control strategies.

, , , , and . Biomed. Signal Process. Control., (2019)

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SVR modelling of mechanomyographic signals predicts neuromuscular stimulation-evoked knee torque in paralyzed quadriceps muscles undergoing knee extension exercise., , , , , and . Comput. Biol. Medicine, (2020)Estimation of Electrically-Evoked Knee Torque from Mechanomyography Using Support Vector Regression., , , , , and . Sensors, 16 (7): 1115 (2016)The Effectiveness of FES-Evoked EMG Potentials to Assess Muscle Force and Fatigue in Individuals with Spinal Cord Injury., , , , and . Sensors, 14 (7): 12598-12622 (2014)Mechanomyography and Torque during FES-Evoked Muscle Contractions to Fatigue in Individuals with Spinal Cord Injury., , , , and . Sensors, 17 (7): 1627 (2017)Changes in blood volume pulse during exercise recovery in activity-based therapy for spinal cord injury., , , , , , and . EMBC, page 693-696. IEEE, (2011)Arm Exercises for Individuals with Spinal Cord Injury: Exergaming versus Arm Cranking., , , , , and . SeGAH, page 1-7. IEEE, (2019)Restoring prolonged standing via functional electrical stimulation after spinal cord injury: A systematic review of control strategies., , , , and . Biomed. Signal Process. Control., (2019)Evoked EMG versus Muscle Torque during Fatiguing Functional Electrical Stimulation-Evoked Muscle Contractions and Short-Term Recovery in Individuals with Spinal Cord Injury., , , , , and . Sensors, 14 (12): 22907-22920 (2014)Neural Network-Based Muscle Torque Estimation Using Mechanomyography During Electrically-Evoked Knee Extension and Standing in Spinal Cord Injury., , , and . Frontiers Neurorobotics, (2018)