This paper proposes a neuromusculoskeletal (NMS) model to predict individual muscle force during elbow flexion and extension. Four male subjects were asked to do voluntary elbow flexion and extension. An inertial sensor and surface electromyography (sEMG) sensors were attached to subject\u27s forearm. Joint angle calculated by fusion of acceleration and angular rate using an extended Kalman filter (EKF) and muscle activations obtained from the sEMG signals were taken as the inputs of the proposed NMS model to determine individual muscle force. The result shows that our NMS model can predict individual muscle force accurately, with the ability to reflect subject-specific joint dynamics and neural control solutions. Our method incorporates sE...
While there exist a number of mechanically sophisticated exoskeletons, prostheses, and assistive rob...
Surface electromyography (sEMG) signals are closely related to the activation of human muscles and t...
This paper presents a linear optimization procedure able to adapt a simplified EMG-driven NeuroMuscu...
This paper proposes a neuromusculoskeletal (NMS) model to predict individual muscle force during elb...
Neuromusculoskeletal (NMS) modeling is a valuable tool in orthopaedic biomechanics and motor control...
xiv, 206 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P REC 2002 KooNeuromusculoske...
The purpose of this study was to determine the contribution of the musculotendon actuators in human ...
The purpose of this study was to determine the contribution of the musculotendon actuators in human ...
Accurate and long-term prediction of elbow flexion force can be used to recognize the intended movem...
The accurate measurement of human joint torque is one of the research hotspots in the field of biome...
Muscle modelling is an important component of body segmental motion analysis. Although many studies ...
Cerebrovascular accidents like a stroke can affect lower limb as well as upper extremity joints (i.e...
Background: This study was to extend previous neuromusculoskeletal modeling efforts through combinin...
Estimation of individual muscle forces during human movement can provide insight into neural control...
While there exist a number of mechanically sophisticated exoskeletons, prostheses, and assistive rob...
While there exist a number of mechanically sophisticated exoskeletons, prostheses, and assistive rob...
Surface electromyography (sEMG) signals are closely related to the activation of human muscles and t...
This paper presents a linear optimization procedure able to adapt a simplified EMG-driven NeuroMuscu...
This paper proposes a neuromusculoskeletal (NMS) model to predict individual muscle force during elb...
Neuromusculoskeletal (NMS) modeling is a valuable tool in orthopaedic biomechanics and motor control...
xiv, 206 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P REC 2002 KooNeuromusculoske...
The purpose of this study was to determine the contribution of the musculotendon actuators in human ...
The purpose of this study was to determine the contribution of the musculotendon actuators in human ...
Accurate and long-term prediction of elbow flexion force can be used to recognize the intended movem...
The accurate measurement of human joint torque is one of the research hotspots in the field of biome...
Muscle modelling is an important component of body segmental motion analysis. Although many studies ...
Cerebrovascular accidents like a stroke can affect lower limb as well as upper extremity joints (i.e...
Background: This study was to extend previous neuromusculoskeletal modeling efforts through combinin...
Estimation of individual muscle forces during human movement can provide insight into neural control...
While there exist a number of mechanically sophisticated exoskeletons, prostheses, and assistive rob...
While there exist a number of mechanically sophisticated exoskeletons, prostheses, and assistive rob...
Surface electromyography (sEMG) signals are closely related to the activation of human muscles and t...
This paper presents a linear optimization procedure able to adapt a simplified EMG-driven NeuroMuscu...