This dissertation presents the development of an upper-body exoskeleton and its control framework for robotic rehabilitation of the arm and shoulder after a neurological disorder such as a stroke. The first step is designing an exoskeleton hardware that supports natural mobility of the human upper body with a wide range of motion for enabling most rehabilitation exercises. The exoskeleton is equipped with torque-controllable actuation units for implementing various robotic rehabilitation protocols based on force and impedance behaviors. The control framework is designed to exhibit a highly backdrivable behavior with a gravity compensation for the robot's weight and optional gravity support for user's arm weight to promote voluntary movement...
The design of an upper limb rehabilitation robot for post-stroke patients is considered a benchmark ...
Stroke is the primary cause of permanent disabilities worldwide. Hemiparesis and hemiplegia (the mos...
This thesis describes the development of a wearable mechatronic brace for upper limb rehabilitation ...
This dissertation presents the development of an upper-body exoskeleton and its control framework fo...
The upper limb rehabilitation robots have made it possible to improve the motor recovery in stroke s...
The number of cerebrovascular and neuromuscular diseases is increasing in parallel with the rising a...
High-intensity and task-specific upper-limb treatment of active, highly repetitive movements are the...
Upper-limb impairment after stroke is caused by weakness, loss of individual joint control, spastici...
Physical rehabilitation based on robotic systems has the potential to cover the patient's need of im...
Motor disabilities caused by neurological disorders such as stroke are a prevailing health issue in ...
Robotic rehabilitation has gained significant traction in recent years, due to the clinical demonstr...
Background: Robot-assisted therapy or exoskeleton is an active mechanical device that can be easily ...
Robot-assisted therapy affords effective advantages to the rehabilitation training of patients with ...
This paper presents a wearable upper body exoskeleton system with a model-based compensation control...
The aim of this project is to develop a rehabilitation robot intended for use in a non-specialised o...
The design of an upper limb rehabilitation robot for post-stroke patients is considered a benchmark ...
Stroke is the primary cause of permanent disabilities worldwide. Hemiparesis and hemiplegia (the mos...
This thesis describes the development of a wearable mechatronic brace for upper limb rehabilitation ...
This dissertation presents the development of an upper-body exoskeleton and its control framework fo...
The upper limb rehabilitation robots have made it possible to improve the motor recovery in stroke s...
The number of cerebrovascular and neuromuscular diseases is increasing in parallel with the rising a...
High-intensity and task-specific upper-limb treatment of active, highly repetitive movements are the...
Upper-limb impairment after stroke is caused by weakness, loss of individual joint control, spastici...
Physical rehabilitation based on robotic systems has the potential to cover the patient's need of im...
Motor disabilities caused by neurological disorders such as stroke are a prevailing health issue in ...
Robotic rehabilitation has gained significant traction in recent years, due to the clinical demonstr...
Background: Robot-assisted therapy or exoskeleton is an active mechanical device that can be easily ...
Robot-assisted therapy affords effective advantages to the rehabilitation training of patients with ...
This paper presents a wearable upper body exoskeleton system with a model-based compensation control...
The aim of this project is to develop a rehabilitation robot intended for use in a non-specialised o...
The design of an upper limb rehabilitation robot for post-stroke patients is considered a benchmark ...
Stroke is the primary cause of permanent disabilities worldwide. Hemiparesis and hemiplegia (the mos...
This thesis describes the development of a wearable mechatronic brace for upper limb rehabilitation ...