We present the redundant kinematics and workspace centering control of AssistOn-Gait, an overground gait and balance trainer designed to deliver pelvis-hip exercises to correct compensatory movements arising from abnormal gait patterns. AssistOn-Gait consists of an impedance controlled pelvis-hip exoskeleton module, supported by a motion controlled holonomic mobile platform. The exoskeleton module possesses 7 active degrees of freedom to independently control the rotation of the each hip in the sagittal plane along with the pelvic tilt, pelvic rotation and the horizontal, vertical and lateral displacements of the pelvis. The holonomic mobile base can track the movements of patients on flat surfaces, allowing patients to walk naturally, star...
Physical therapy is a field with ever increasing demands as the population ages, resulting in a larg...
In this paper, a four degrees-of-freedom robotic hip exoskeleton was proposed for gait rehabilitatio...
Introduction: In the past years, robotic lower-limb exoskeletons have become a powerful tool to help...
Human locomotion is crucial for performing activities of daily living and any disability in gait cau...
Gait rehabilitation training with robotic exoskeleton is drawing attention as a method for more adva...
The gait restoration is a significant component of the rehabilitation of patients with hemiplegia af...
AbstractRobotic devices have been designed to enhance motor recovery by replicating clinical motion ...
Several benefits could be brought to rehabilitation by the introduction of robotic devices to side t...
In this work, we present the overground prototype gait-rehabilitation robot for using motion assista...
Overground gait training under body weight support (BWS) for patients who suffer from neurological i...
Current exoskeletons replay pre-programmed trajectories at the actuated joints. Towards the employme...
The following work presents a novel, overground robotic gait trainer: the mobile Tethered Pelvic Ass...
In this paper, we study the human locomotor adaptation to the action of a powered exoskeleton provid...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
The primary goal of human locomotion is to stably translate the center of mass (CoM) over the ground...
Physical therapy is a field with ever increasing demands as the population ages, resulting in a larg...
In this paper, a four degrees-of-freedom robotic hip exoskeleton was proposed for gait rehabilitatio...
Introduction: In the past years, robotic lower-limb exoskeletons have become a powerful tool to help...
Human locomotion is crucial for performing activities of daily living and any disability in gait cau...
Gait rehabilitation training with robotic exoskeleton is drawing attention as a method for more adva...
The gait restoration is a significant component of the rehabilitation of patients with hemiplegia af...
AbstractRobotic devices have been designed to enhance motor recovery by replicating clinical motion ...
Several benefits could be brought to rehabilitation by the introduction of robotic devices to side t...
In this work, we present the overground prototype gait-rehabilitation robot for using motion assista...
Overground gait training under body weight support (BWS) for patients who suffer from neurological i...
Current exoskeletons replay pre-programmed trajectories at the actuated joints. Towards the employme...
The following work presents a novel, overground robotic gait trainer: the mobile Tethered Pelvic Ass...
In this paper, we study the human locomotor adaptation to the action of a powered exoskeleton provid...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
The primary goal of human locomotion is to stably translate the center of mass (CoM) over the ground...
Physical therapy is a field with ever increasing demands as the population ages, resulting in a larg...
In this paper, a four degrees-of-freedom robotic hip exoskeleton was proposed for gait rehabilitatio...
Introduction: In the past years, robotic lower-limb exoskeletons have become a powerful tool to help...