Wearable robotic devices can restore and enhance mobility. There is growing interest in designing devices that reduce the metabolic cost of walking; however, designers lack guidelines for which joints to assist and when to provide the assistance. To help address this problem, we used musculoskeletal simulation to predict how hypothetical devices affect muscle activity and metabolic cost when walking with heavy loads. We explored 7 massless devices, each providing unrestricted torque at one degree of freedom in one direction (hip abduction, hip flexion, hip extension, knee flexion, knee extension, ankle plantarflexion, or ankle dorsiflexion). We used the Computed Muscle Control algorithm in OpenSim to find device torque profiles that minimiz...
<p>Exoskeletons have the ability to improve locomotor performance for a wide range of individuals: t...
Exoskeletons have the ability to improve locomotor performance for a wide range of individuals: they...
Humans tend to value economy of locomotion, often choosing movement strategies that help minimize ho...
Humans conserve energy during walking using an inverted pendulum mechanism during single-limb suppor...
In this paper, we study the human locomotor adaptation to the action of a powered exoskeleton provid...
Wearable robotic assistive devices have the potential to improve the metabolic efficiency of human l...
© 2018 Int. J. Mech. Eng. Rob. Res. Reducing metabolic cost of walking has long been a challenge fo...
© 2016 Mooney and Herr. Background: Ankle exoskeletons can now reduce the metabolic cost of walking ...
The goal of this study was to gain insight into how ankle exoskeletons affect the behavior of the pl...
In this work, movement of the exoskeleton wearer and the metabolic energy changes with the assisted ...
Humans employ a high degree of redundancy in joint actuation, with different combinations of muscle ...
In this work, movement of the exoskeleton wearer and the metabolic energy changes with the assisted ...
In this work, movement of the exoskeleton wearer and the metabolic energy changes with the assisted ...
The goal of this study was to gain insight into how ankle exoskeletons affect the behavior of the pl...
In this work, movement of the exoskeleton wearer and the metabolic energy changes with the assisted ...
<p>Exoskeletons have the ability to improve locomotor performance for a wide range of individuals: t...
Exoskeletons have the ability to improve locomotor performance for a wide range of individuals: they...
Humans tend to value economy of locomotion, often choosing movement strategies that help minimize ho...
Humans conserve energy during walking using an inverted pendulum mechanism during single-limb suppor...
In this paper, we study the human locomotor adaptation to the action of a powered exoskeleton provid...
Wearable robotic assistive devices have the potential to improve the metabolic efficiency of human l...
© 2018 Int. J. Mech. Eng. Rob. Res. Reducing metabolic cost of walking has long been a challenge fo...
© 2016 Mooney and Herr. Background: Ankle exoskeletons can now reduce the metabolic cost of walking ...
The goal of this study was to gain insight into how ankle exoskeletons affect the behavior of the pl...
In this work, movement of the exoskeleton wearer and the metabolic energy changes with the assisted ...
Humans employ a high degree of redundancy in joint actuation, with different combinations of muscle ...
In this work, movement of the exoskeleton wearer and the metabolic energy changes with the assisted ...
In this work, movement of the exoskeleton wearer and the metabolic energy changes with the assisted ...
The goal of this study was to gain insight into how ankle exoskeletons affect the behavior of the pl...
In this work, movement of the exoskeleton wearer and the metabolic energy changes with the assisted ...
<p>Exoskeletons have the ability to improve locomotor performance for a wide range of individuals: t...
Exoskeletons have the ability to improve locomotor performance for a wide range of individuals: they...
Humans tend to value economy of locomotion, often choosing movement strategies that help minimize ho...