Objective: Current limitations in Electromyography (EMG)-driven Neuromusculoskeletal (NMS) modeling for control of wearable robotics are the requirement of both Motion Capture for both an indoor system and numerous EMG electrodes. These limitations make the technology unsuitable for amputees with only proximal muscles, who need optimal prosthetic device control during everyday activities. Therefore, we developed a novel Machine Learning (ML)driven NMS model able to predict lower limb joint torque only from wearable sensors than can be embedded in a prosthetic device. Methods: After the NMS model calibration of a single healthy subject (OpenSim® software and Calibrated EMGInformed Neuromusculoskeletal Modelling CEINMS Toolbox), an additional...
We propose a myoelectric control method based on neural data regression and musculoskeletal modeling...
Exoskeletons are increasingly used in rehabilitation and daily life in persons with motor disorders ...
Exoskeletons are increasingly used in rehabilitation and daily life in persons with motor disorders ...
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 ...
Objectives: Robotic prosthetic limbs promise to replace mechanical function of lost biological extre...
The growing interest of the industry production in wearable robots for assistance and rehabilitation...
The growing interest of the industry production in wearable robots for assistance and rehabilitation...
The growing interest of the industry production in wearable robots for assistance and rehabilitation...
The growing interest of the industry production in wearable robots for assistance and rehabilitation...
Joint torques of lower extremity are important clinical indicators of gait capability. This paramete...
This research work presents a novel neuromusculoskeletal (NMS) model of the human lower limb that is...
We propose a myoelectric control method based on neural data regression and musculoskeletal modeling...
Exoskeletons are increasingly used in rehabilitation and daily life in persons with motor disorders ...
Exoskeletons are increasingly used in rehabilitation and daily life in persons with motor disorders ...
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 ...
Objectives: Robotic prosthetic limbs promise to replace mechanical function of lost biological extre...
The growing interest of the industry production in wearable robots for assistance and rehabilitation...
The growing interest of the industry production in wearable robots for assistance and rehabilitation...
The growing interest of the industry production in wearable robots for assistance and rehabilitation...
The growing interest of the industry production in wearable robots for assistance and rehabilitation...
Joint torques of lower extremity are important clinical indicators of gait capability. This paramete...
This research work presents a novel neuromusculoskeletal (NMS) model of the human lower limb that is...
We propose a myoelectric control method based on neural data regression and musculoskeletal modeling...
Exoskeletons are increasingly used in rehabilitation and daily life in persons with motor disorders ...
Exoskeletons are increasingly used in rehabilitation and daily life in persons with motor disorders ...