Joint torques of lower extremity are important clinical indicators of gait capability. This parameter can be quantified via hybrid neuromusculoskeletal modelling that combines electromyography-driven modelling and static optimisation. The simulations rely on kinematics and external force measurements, for example, ground reaction forces (GRF) and the corresponding centres of pressure (COP), which are conventionally acquired using force plates. This bulky equipment, however, hinders gait analysis in real-world environments. While this portability issue could potentially be solved by estimating the parameters through machine learning, the effect of the estimation errors on joint torque prediction with biomechanical models remains to be invest...
The aim of the present thesis was to investigate the influence of lower-limb joint models on musculo...
Ankle joint power is usually determined by a complex process that involves heavy equipment and compl...
Joint moment measurements represent an objective biomechemical parameter in joint health assessment....
Funding Information: Funding: This research was funded by Academy of Finland, grant number 333149. P...
Human joint torques during gait are usually computed using inverse dynamics. This method requires a ...
This study described a method to estimate complete ground reaction forces and ankle joint torques fr...
Ground reaction forces (GRF) and joint kinematics are critical parameters for gait analysis. The con...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Conventional biomechanical modelling approaches involve the solution of large systems of equations t...
Powered Assistive Devices (PADs) have been proposed to enable repetitive, user-oriented gait rehabil...
The aim of the present thesis was to investigate the influence of lower-limb joint models on musculo...
Ankle joint power is usually determined by a complex process that involves heavy equipment and compl...
Joint moment measurements represent an objective biomechemical parameter in joint health assessment....
Funding Information: Funding: This research was funded by Academy of Finland, grant number 333149. P...
Human joint torques during gait are usually computed using inverse dynamics. This method requires a ...
This study described a method to estimate complete ground reaction forces and ankle joint torques fr...
Ground reaction forces (GRF) and joint kinematics are critical parameters for gait analysis. The con...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling ...
Conventional biomechanical modelling approaches involve the solution of large systems of equations t...
Powered Assistive Devices (PADs) have been proposed to enable repetitive, user-oriented gait rehabil...
The aim of the present thesis was to investigate the influence of lower-limb joint models on musculo...
Ankle joint power is usually determined by a complex process that involves heavy equipment and compl...
Joint moment measurements represent an objective biomechemical parameter in joint health assessment....