To develop and evaluate a hybrid robotic system for arm recovery after stroke, combining EMG-triggered Functional Electrical Stimulation (FES) with a passive exoskeleton for upper limb suspension. Methods: The system was used in a structured exercise program resembling activities of daily life. Exercises execution was continuously controlled using angle sensor data and Radio-Frequency IDentification (RFID) technology. The training program consisted of 27 sessions lasting 30 minutes each. Seven post-acute stroke patients were recruited from two clinical sites. The efficacy of the system was evaluated in terms of Action Research Arm Test, Motricity Index, Motor Activity Log, and Box & Blocks tests. Furthermore, kinematicsbased ...
Reach, grasp and release is part of many functional movements. Graying of society leads to more stro...
Stroke is the main cause of acquired adult disability with major impact on arm function. The combine...
This research tunes and validates advanced robot-based technologies to facilitate recovery of arm an...
To develop and evaluate a hybrid robotic system for arm recovery after stroke, combining EMG-trigge...
To develop and evaluate a hybrid robotic system for arm recovery after stroke, combining EMG-trigge...
To develop and evaluate a hybrid robotic system for arm recovery after stroke, combining EMG-trigge...
To develop and evaluate a hybrid robotic system for arm recovery after stroke, combining EMG-trigge...
This work presents the preliminary results of a randomized controlled trial aimed at evaluating the...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Reach, grasp and release is part of many functional movements. Graying of society leads to more stro...
Reach, grasp and release is part of many functional movements. Graying of society leads to more stro...
Stroke is the main cause of acquired adult disability with major impact on arm function. The combine...
This research tunes and validates advanced robot-based technologies to facilitate recovery of arm an...
To develop and evaluate a hybrid robotic system for arm recovery after stroke, combining EMG-trigge...
To develop and evaluate a hybrid robotic system for arm recovery after stroke, combining EMG-trigge...
To develop and evaluate a hybrid robotic system for arm recovery after stroke, combining EMG-trigge...
To develop and evaluate a hybrid robotic system for arm recovery after stroke, combining EMG-trigge...
This work presents the preliminary results of a randomized controlled trial aimed at evaluating the...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Background: Robotic systems combined with Functional Electrical Stimulation (FES) showed promising r...
Reach, grasp and release is part of many functional movements. Graying of society leads to more stro...
Reach, grasp and release is part of many functional movements. Graying of society leads to more stro...
Stroke is the main cause of acquired adult disability with major impact on arm function. The combine...
This research tunes and validates advanced robot-based technologies to facilitate recovery of arm an...