Exoskeletons for rehabilitation commonly focus on gait training, despite the variety of human movements and functional assistance needed. Cable-driven exoskeletons have an advantage in addressing a variety of movements by being non-restrictive in their design. Additionally, these devices do not require complex mechanical joints to apply forces on the user or hinder the user's mobility. This accommodation of movement makes these cable-driven architectures more suitable for everyday movement. However, these flexible cable-driven exoskeletons often actuate a reduced number of actuated degrees-of-freedom to simplify their mechanical complexity. There is a need to design flexible and low-profile cable-driven exoskeletons to accommodate the movem...
Lower limb exoskeletons have been extensively developed over the last several decades for people wit...
The development of a portable assistive device to aid patients affected by neuromuscular disorders h...
The gait of every adult is unique and expected to be ingrained within the neuromuscular system. The ...
This paper presents a novel cable-driven robotic joint for a gait exoskeleton robot. We discussed in...
Exoskeletons for gait training commonly use a rigid-linked "skeleton" which makes them heavy and bul...
In this paper, we present the dynamics, control, and preliminary experiments on a wearable upper arm...
Physical therapy is a field with ever increasing demands as the population ages, resulting in a larg...
Robotic systems are being used for gait rehabilitation of patients with neurological disorder. These...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...
Wearable robots have shown great potential for augmenting the physical capabilities of humans in lab...
Lower-limb exoskeletons have potential to increase endurance, reduce incidence of injury, aid rehabi...
Wearable robots have shown great potential for augmenting the physical capabilities of humans in lab...
Lower-limb exoskeletons have potential to increase endurance, reduce incidence of injury, aid rehabi...
Powered lower-extremity exoskeletons have traditionally used four to ten powered degrees of freedom ...
Lower limb exoskeletons have been extensively developed over the last several decades for people wit...
Lower limb exoskeletons have been extensively developed over the last several decades for people wit...
The development of a portable assistive device to aid patients affected by neuromuscular disorders h...
The gait of every adult is unique and expected to be ingrained within the neuromuscular system. The ...
This paper presents a novel cable-driven robotic joint for a gait exoskeleton robot. We discussed in...
Exoskeletons for gait training commonly use a rigid-linked "skeleton" which makes them heavy and bul...
In this paper, we present the dynamics, control, and preliminary experiments on a wearable upper arm...
Physical therapy is a field with ever increasing demands as the population ages, resulting in a larg...
Robotic systems are being used for gait rehabilitation of patients with neurological disorder. These...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...
Wearable robots have shown great potential for augmenting the physical capabilities of humans in lab...
Lower-limb exoskeletons have potential to increase endurance, reduce incidence of injury, aid rehabi...
Wearable robots have shown great potential for augmenting the physical capabilities of humans in lab...
Lower-limb exoskeletons have potential to increase endurance, reduce incidence of injury, aid rehabi...
Powered lower-extremity exoskeletons have traditionally used four to ten powered degrees of freedom ...
Lower limb exoskeletons have been extensively developed over the last several decades for people wit...
Lower limb exoskeletons have been extensively developed over the last several decades for people wit...
The development of a portable assistive device to aid patients affected by neuromuscular disorders h...
The gait of every adult is unique and expected to be ingrained within the neuromuscular system. The ...