Background: Carrying load alters normal walking, imposes additional stress to the musculoskeletal system, and results in an increase in energy consumption and a consequent earlier onset of fatigue. This phenomenon is largely due to increased work requirements in lower extremity joints, in turn requiring higher muscle activation. The aim of this work was to assess the biomechanical and physiological effects of a multi-joint soft exosuit that applies assistive torques to the biological hip and ankle joints during loaded walking. Methods: The exosuit was evaluated under three conditions: powered (EXO_ON), unpowered (EXO_OFF) and unpowered removing the equivalent mass of the device (EXO_OFF_EMR). Seven participants walked on an instrumented spl...
Abstract Background Powered ankle-foot exoskeletons can reduce the metabolic cost of human walking t...
Walking is the most commonplace of activities, yet we know remarkably little about it and no robot h...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Ca...
Wearable robotic devices have been proved to considerably reduce the energy expenditure of human wal...
Humans conserve energy during walking using an inverted pendulum mechanism during single-limb suppor...
Background: Only very recently, studies have shown that it is possible to reduce the metabolic rate ...
© 2016 Mooney and Herr. Background: Ankle exoskeletons can now reduce the metabolic cost of walking ...
Abstract Background Soft exosuits are a recent approach for assisting human locomotion, which apply ...
Background: Many soldiers are expected to carry heavy loads over extended distances, often resulting...
Background: Passive exoskeletons that assist with human locomotion are often lightweight and compac...
Abstract Background Load carriage is common in a wide range of professions, but prolonged load carri...
How to improve the walking efficiency while ensuring the wearability is an important issue of lower ...
Background: Soft wearable robots (exosuits), being lightweight, ergonomic and low power-demanding, a...
Robotic exoskeletons can assist plantarflexion by means of pneumatic actuators. Most experiments mak...
Background: Recent advances in wearable robotic devices have demonstrated the ability to reduce the ...
Abstract Background Powered ankle-foot exoskeletons can reduce the metabolic cost of human walking t...
Walking is the most commonplace of activities, yet we know remarkably little about it and no robot h...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Ca...
Wearable robotic devices have been proved to considerably reduce the energy expenditure of human wal...
Humans conserve energy during walking using an inverted pendulum mechanism during single-limb suppor...
Background: Only very recently, studies have shown that it is possible to reduce the metabolic rate ...
© 2016 Mooney and Herr. Background: Ankle exoskeletons can now reduce the metabolic cost of walking ...
Abstract Background Soft exosuits are a recent approach for assisting human locomotion, which apply ...
Background: Many soldiers are expected to carry heavy loads over extended distances, often resulting...
Background: Passive exoskeletons that assist with human locomotion are often lightweight and compac...
Abstract Background Load carriage is common in a wide range of professions, but prolonged load carri...
How to improve the walking efficiency while ensuring the wearability is an important issue of lower ...
Background: Soft wearable robots (exosuits), being lightweight, ergonomic and low power-demanding, a...
Robotic exoskeletons can assist plantarflexion by means of pneumatic actuators. Most experiments mak...
Background: Recent advances in wearable robotic devices have demonstrated the ability to reduce the ...
Abstract Background Powered ankle-foot exoskeletons can reduce the metabolic cost of human walking t...
Walking is the most commonplace of activities, yet we know remarkably little about it and no robot h...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Ca...