A user intention based rehabilitation strategy for a lower-limb wearable robot is proposed and evaluated. The control strategy, which involves monitoring the human-orthosis interaction torques, determines the gait initiation instant and modifies orthosis operation for gait assistance, when needed. Orthosis operation is classified as assistive or resistive in function of its evolution with respect to a normal gait pattern. The control algorithm relies on the adaptation of the joints’ stiffness in function of their interaction torques and their deviation from the desired trajectories. An average of recorded gaits obtained from healthy subjects is used as reference input. The objective of this work is to develop a control strategy that can tri...
Robotic exoskeletons see much potential in the field of assisted gait rehabilitation. Particularly w...
Wearable robots are expected to expand the use of robotics in rehabilitation since they can widen th...
The gait of every adult is unique and expected to be ingrained within the neuromuscular system. The ...
A user intention based rehabilitation strategy for a lower-limb wearable robot is proposed and evalu...
An assistive rehabilitation strategy for a lower-limb wearable robot is proposed and evaluated. The ...
An automatic gait initialization strategy based on user intention sensing in the context of rehabili...
BackgroundGait training for individuals with neurological disorders is challenging in providing the ...
Background Gait training for individuals with neurological disorders is challenging in providing the...
Abstract Background Gait training for individuals with neurological disorders is challenging in prov...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
Background: Gait training for individuals with neurological disorders is challenging in providing th...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
Robotic exoskeletons see much potential in the field of assisted gait rehabilitation. Particularly w...
Wearable robots are expected to expand the use of robotics in rehabilitation since they can widen th...
The gait of every adult is unique and expected to be ingrained within the neuromuscular system. The ...
A user intention based rehabilitation strategy for a lower-limb wearable robot is proposed and evalu...
An assistive rehabilitation strategy for a lower-limb wearable robot is proposed and evaluated. The ...
An automatic gait initialization strategy based on user intention sensing in the context of rehabili...
BackgroundGait training for individuals with neurological disorders is challenging in providing the ...
Background Gait training for individuals with neurological disorders is challenging in providing the...
Abstract Background Gait training for individuals with neurological disorders is challenging in prov...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
Background: Gait training for individuals with neurological disorders is challenging in providing th...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
This paper introduces a novel control strategy for a multi-joint lower-limb exoskeleton during groun...
Robotic exoskeletons see much potential in the field of assisted gait rehabilitation. Particularly w...
Wearable robots are expected to expand the use of robotics in rehabilitation since they can widen th...
The gait of every adult is unique and expected to be ingrained within the neuromuscular system. The ...