A main challenge in the development of robotic rehabilitation devices is how to understand patient's intentions and adapt to his/her current neuro-physiological capabilities. A promising approach is the use of electromyographic (EMG) signals which reflect the actual activation of the muscles during the movement and, thus, are a direct representation of user's movement intention. However, EMGs acquisition is a complex procedure, requiring trained therapists and, therefore, solutions based on EMG signals are not easily integrable in devices for home-rehabilitation. This work investigates the effectiveness of a subject- and task-specific EMG model in estimating EMG signals in cyclic plantar-dorsiflexion movements. Then, the outputs of this mod...
This work presents the design of a novel neuromusculoskeletal model (NMS) of the human lower limb to...
Current changes in aging demographics poses new challenges: people require to keep their quality of ...
This paper proposes a neuromusculoskeletal (NMS) model to predict individual muscle force during elb...
A key factor in physical rehabilitation is the active participation of the patients in exerting effo...
Robotic devices have great potential in physical therapy owing to their repeatability, reliability a...
Neuro-rehabilitation is a medical process aimed at restoring the sensory and motor functions of the ...
EMG signals are often used to control prostheses or assistive devices, but have been rarely used in ...
Neuromusculoskeletal (NMS) modeling is a valuable tool in orthopaedic biomechanics and motor control...
Personalized neuromusculoskeletal (NMS) models can represent the neurological, physiological, and an...
Electromyography (EMG) has been widely used as control commands for prosthesis, powered exoskeletons...
This paper presents a linear optimization procedure able to adapt a simplified EMG-driven NeuroMuscu...
Rehabilitation device is used as an exoskeleton for peoples who had failure of their limb. Arm rehab...
The use of robotic systems has been investigated over the past couple of decades in improving rehab...
Restoring natural motor function in neurologically injured individuals is challenging, largely due t...
The present study estimated muscle activation from electromyographic (EMG) recordings in patients wi...
This work presents the design of a novel neuromusculoskeletal model (NMS) of the human lower limb to...
Current changes in aging demographics poses new challenges: people require to keep their quality of ...
This paper proposes a neuromusculoskeletal (NMS) model to predict individual muscle force during elb...
A key factor in physical rehabilitation is the active participation of the patients in exerting effo...
Robotic devices have great potential in physical therapy owing to their repeatability, reliability a...
Neuro-rehabilitation is a medical process aimed at restoring the sensory and motor functions of the ...
EMG signals are often used to control prostheses or assistive devices, but have been rarely used in ...
Neuromusculoskeletal (NMS) modeling is a valuable tool in orthopaedic biomechanics and motor control...
Personalized neuromusculoskeletal (NMS) models can represent the neurological, physiological, and an...
Electromyography (EMG) has been widely used as control commands for prosthesis, powered exoskeletons...
This paper presents a linear optimization procedure able to adapt a simplified EMG-driven NeuroMuscu...
Rehabilitation device is used as an exoskeleton for peoples who had failure of their limb. Arm rehab...
The use of robotic systems has been investigated over the past couple of decades in improving rehab...
Restoring natural motor function in neurologically injured individuals is challenging, largely due t...
The present study estimated muscle activation from electromyographic (EMG) recordings in patients wi...
This work presents the design of a novel neuromusculoskeletal model (NMS) of the human lower limb to...
Current changes in aging demographics poses new challenges: people require to keep their quality of ...
This paper proposes a neuromusculoskeletal (NMS) model to predict individual muscle force during elb...