Background: Passive exoskeletons that assist with human locomotion are often lightweight and compact, but are unable to provide net mechanical power to the exoskeletal wearer. In contrast, powered exoskeletons often provide biologically appropriate levels of mechanical power, but the size and mass of their actuator/power source designs often lead to heavy and unwieldy devices. In this study, we extend the design and evaluation of a lightweight and powerful autonomous exoskeleton evaluated for loaded walking in (J Neuroeng Rehab 11:80, 2014) to the case of unloaded walking conditions. Findings: The metabolic energy consumption of seven study participants (85 ± 12 kg body mass) was measured while walking on a level treadmill at 1.4 m/s. Te...
Humans conserve energy during walking using an inverted pendulum mechanism during single-limb suppor...
Ever since human ancestors picked up rocks and used them as tools, technology has enhanced human cap...
Abstract Background Powered ankle-foot exoskeletons can reduce the metabolic cost of human walking t...
Background: Many soldiers are expected to carry heavy loads over extended distances, often resulting...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Ca...
© 2016 Mooney and Herr. Background: Ankle exoskeletons can now reduce the metabolic cost of walking ...
Robotic exoskeletons can assist plantarflexion by means of pneumatic actuators. Most experiments mak...
al he e a tud mous ankle exoskeleton that reduced the metabolic bur- hypothesis by measuring the met...
Biomechanical experiments suggest that it may be possible to build a leg exoskeleton to reduce the m...
Walking is the most commonplace of activities, yet we know remarkably little about it and no robot h...
Abstract Background Load carriage is common in a wide range of professions, but prolonged load carri...
Background: Carrying load alters normal walking, imposes additional stress to the musculoskeletal sy...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Catal...
<div><h3>Background</h3><p>Even though walking can be sustained for great distances, considerable en...
BACKGROUND: Even though walking can be sustained for great distances, considerable energy is require...
Humans conserve energy during walking using an inverted pendulum mechanism during single-limb suppor...
Ever since human ancestors picked up rocks and used them as tools, technology has enhanced human cap...
Abstract Background Powered ankle-foot exoskeletons can reduce the metabolic cost of human walking t...
Background: Many soldiers are expected to carry heavy loads over extended distances, often resulting...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Ca...
© 2016 Mooney and Herr. Background: Ankle exoskeletons can now reduce the metabolic cost of walking ...
Robotic exoskeletons can assist plantarflexion by means of pneumatic actuators. Most experiments mak...
al he e a tud mous ankle exoskeleton that reduced the metabolic bur- hypothesis by measuring the met...
Biomechanical experiments suggest that it may be possible to build a leg exoskeleton to reduce the m...
Walking is the most commonplace of activities, yet we know remarkably little about it and no robot h...
Abstract Background Load carriage is common in a wide range of professions, but prolonged load carri...
Background: Carrying load alters normal walking, imposes additional stress to the musculoskeletal sy...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Catal...
<div><h3>Background</h3><p>Even though walking can be sustained for great distances, considerable en...
BACKGROUND: Even though walking can be sustained for great distances, considerable energy is require...
Humans conserve energy during walking using an inverted pendulum mechanism during single-limb suppor...
Ever since human ancestors picked up rocks and used them as tools, technology has enhanced human cap...
Abstract Background Powered ankle-foot exoskeletons can reduce the metabolic cost of human walking t...