We present an optimal feedback model of human standing balance that answers three open questions related to the complexity, energy requirements, and robustness of the control architecture and that will serve as the basis for a biomimetic control strategy for robot-assisted balance.status: publishe
A central question to our understanding of postural control is the overall goal of standing balance....
Abstract: The question posed in this study is whether optimal control and state estimation can expla...
A central question to our understanding of postural control is the overall goal of standing balance....
We present an optimal feedback model of human standing balance that answers three open questions rel...
This article provides a theoretical and thorough experimental comparison of two distinct posture con...
Currently, no bipedal robot exhibits fully human-like characteristics in terms of its postural contr...
Currently, no bipedal robot exhibits fully human-like characteristics in terms of its postural contr...
International audienceThis paper models recent data in the field of postural coordination showing th...
One of the most important tasks in biped robot is the balance-keeping control. A question arisen as ...
This thesis provides insight and novel tools for investigation into the neuromotor control of human ...
This thesis details the implementation and application of a robotic system for investigating the rol...
This thesis details the implementation and application of a robotic system for investigating the rol...
Human upright stance is inherently unstable without a balance control scheme. Many biological behavi...
Human-like balance controllers are desired for wearable exoskeletons in order to enhance human-robot...
Postural stability is a requirement for autonomous adaptive legged locomotion. Neurobiological rese...
A central question to our understanding of postural control is the overall goal of standing balance....
Abstract: The question posed in this study is whether optimal control and state estimation can expla...
A central question to our understanding of postural control is the overall goal of standing balance....
We present an optimal feedback model of human standing balance that answers three open questions rel...
This article provides a theoretical and thorough experimental comparison of two distinct posture con...
Currently, no bipedal robot exhibits fully human-like characteristics in terms of its postural contr...
Currently, no bipedal robot exhibits fully human-like characteristics in terms of its postural contr...
International audienceThis paper models recent data in the field of postural coordination showing th...
One of the most important tasks in biped robot is the balance-keeping control. A question arisen as ...
This thesis provides insight and novel tools for investigation into the neuromotor control of human ...
This thesis details the implementation and application of a robotic system for investigating the rol...
This thesis details the implementation and application of a robotic system for investigating the rol...
Human upright stance is inherently unstable without a balance control scheme. Many biological behavi...
Human-like balance controllers are desired for wearable exoskeletons in order to enhance human-robot...
Postural stability is a requirement for autonomous adaptive legged locomotion. Neurobiological rese...
A central question to our understanding of postural control is the overall goal of standing balance....
Abstract: The question posed in this study is whether optimal control and state estimation can expla...
A central question to our understanding of postural control is the overall goal of standing balance....