The actuation system of a powered upper limb orthosis is studied in the work. To create natural safety in the mutual “man-robot” interaction, an actuation system based on pneumatic artificial muscles (PAM) is selected. Experimentally obtained force/contraction diagrams for bundles, consisting of different number of muscles are shown in the paper. The pooling force and the stiffness of the pneumatic actuators is assessed as a function of the number of muscles in the bundle and the supply pressure. Joint motion and torque is achieved by antagonistic actions through pulleys, driven by bundles of pneumatic muscles. Joint stiffness and joint torques are determined on condition of a power balance, as a function of the joint position, pressure, nu...
In response to the need for a sophisticated powered upper-limb orthosis for use by people with disab...
Pneumatic artificial muscles (PAMs) are soft and flexible linear pneumatic actuators which produce h...
The paper considers a novel modular and intrinsically safe redundant robotic system with biologicall...
It is a general assumption that pneumatic muscle-type actuators will play an important role in the d...
Outlines the history of pneumatic muscle actuators as applied to prosthetics, orthotics and rehabili...
A powered orthosis has applications ranging from assisting the elderly to augmenting astronauts. An ...
Pneumatic artificial muscles (PAMs) have properties similar to biological muscle and are widely used...
Pneumatic artificial muscles (PAMs) get widely adopted due to their similar properties compared with...
This study presents the design of a soft robotic actuator to serve as a medically assisted rehabilit...
Full or partial loss of function in the upper limb is an increasingly common due to sports injuries,...
Copyright © Cambridge University PressDOI: http://dx.doi.org/10.1017/S0263574714001556The goal of th...
Many patients with spinal injures are confined to wheelchairs, leading to a sedentary lifestyle with...
Wearable assistive robotics is a modern field where intelligent actuated systems work in collaborati...
Developing robotic systems which can operate in complex, human centred environments is a major chall...
A review study was conducted on existing lower-limb orthosis systems for rehabilitation which implem...
In response to the need for a sophisticated powered upper-limb orthosis for use by people with disab...
Pneumatic artificial muscles (PAMs) are soft and flexible linear pneumatic actuators which produce h...
The paper considers a novel modular and intrinsically safe redundant robotic system with biologicall...
It is a general assumption that pneumatic muscle-type actuators will play an important role in the d...
Outlines the history of pneumatic muscle actuators as applied to prosthetics, orthotics and rehabili...
A powered orthosis has applications ranging from assisting the elderly to augmenting astronauts. An ...
Pneumatic artificial muscles (PAMs) have properties similar to biological muscle and are widely used...
Pneumatic artificial muscles (PAMs) get widely adopted due to their similar properties compared with...
This study presents the design of a soft robotic actuator to serve as a medically assisted rehabilit...
Full or partial loss of function in the upper limb is an increasingly common due to sports injuries,...
Copyright © Cambridge University PressDOI: http://dx.doi.org/10.1017/S0263574714001556The goal of th...
Many patients with spinal injures are confined to wheelchairs, leading to a sedentary lifestyle with...
Wearable assistive robotics is a modern field where intelligent actuated systems work in collaborati...
Developing robotic systems which can operate in complex, human centred environments is a major chall...
A review study was conducted on existing lower-limb orthosis systems for rehabilitation which implem...
In response to the need for a sophisticated powered upper-limb orthosis for use by people with disab...
Pneumatic artificial muscles (PAMs) are soft and flexible linear pneumatic actuators which produce h...
The paper considers a novel modular and intrinsically safe redundant robotic system with biologicall...