This article presents an electromyography-driven musculoskeletal model that can estimate joint torque and joint stiffness simultaneously. We show a novel model parameter calibration procedure that tries to fit reference joint torque and joint stiffness profiles
Background: A musculoskeletal model for the ankle complex is vital in order to enhance the understan...
The joint stiffness plays a significant role during movement; however its function is not fully und...
Changes in human balance control can objectively be assessed using system identification techniques ...
The simultaneous modulation of joint torque and stiffness enables humans to perform large repertoire...
The simultaneous modulation of joint torque and stiffness enables humans to perform large repertoire...
Joint stiffness estimation under dynamic conditions still remains a challenge. Current stiffness est...
Joint stiffness estimation under dynamic conditions still remains a challenge. Current stiffness est...
We address the estimation of biomechanical parameters with wearable measurement technologies. In par...
We address the estimation of biomechanical parameters with wearable measurement technologies. In par...
An important goal in the design of next-generation exoskeletons and limb prostheses is to replicate ...
Conference contribution published in 2019 41st Annual International Conference of the IEEE Engineeri...
An important goal in the design of next-generation exoskeletons and limb prostheses is to replicate ...
This work presents an electrophysiologically and dynamically consistent musculoskeletal model to pre...
Background A musculoskeletal model for the ankle complex is vital in order to enhance the understand...
Abstract BackgroundA musculoskeletal model for the ankle complex is vital in order to enhance the un...
Background: A musculoskeletal model for the ankle complex is vital in order to enhance the understan...
The joint stiffness plays a significant role during movement; however its function is not fully und...
Changes in human balance control can objectively be assessed using system identification techniques ...
The simultaneous modulation of joint torque and stiffness enables humans to perform large repertoire...
The simultaneous modulation of joint torque and stiffness enables humans to perform large repertoire...
Joint stiffness estimation under dynamic conditions still remains a challenge. Current stiffness est...
Joint stiffness estimation under dynamic conditions still remains a challenge. Current stiffness est...
We address the estimation of biomechanical parameters with wearable measurement technologies. In par...
We address the estimation of biomechanical parameters with wearable measurement technologies. In par...
An important goal in the design of next-generation exoskeletons and limb prostheses is to replicate ...
Conference contribution published in 2019 41st Annual International Conference of the IEEE Engineeri...
An important goal in the design of next-generation exoskeletons and limb prostheses is to replicate ...
This work presents an electrophysiologically and dynamically consistent musculoskeletal model to pre...
Background A musculoskeletal model for the ankle complex is vital in order to enhance the understand...
Abstract BackgroundA musculoskeletal model for the ankle complex is vital in order to enhance the un...
Background: A musculoskeletal model for the ankle complex is vital in order to enhance the understan...
The joint stiffness plays a significant role during movement; however its function is not fully und...
Changes in human balance control can objectively be assessed using system identification techniques ...