Theoretical studies and robotic experiments have shown that asymptotically stable periodic walking may emerge from nonlinear limit-cycle oscillators in the neuro-mechanical periphery. We recently reported entrainment of human gait to periodic mechanical perturbations with two essential features: 1) entrainment occurred only when the perturbation period was close to the original (preferred) walking period, and 2) entrainment was always accompanied by phase locking so that the perturbation occurred at the end of the double-stance phase. In this study, we show that a highly-simplified state-determined walking model can reproduce several salient nonlinear limit-cycle behaviors of human walking: 1) periodic gait that is 2) asymptotically stable;...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
This paper provides an update on the neural control of bipedal walking in relation to bioinspired mo...
Theoretical studies and robotic experiments have shown that asymptotically stable periodic walking m...
Theoretical studies and robotic experiments have shown that asymptotically stable periodic walking m...
Theoretical studies and robotic experiments have shown that asymptotically stable periodic walking m...
Robotic studies have suggested a contribution of limit-cycle oscillation of the neuro-mechanical per...
The control architecture underlying human reaching has been established, at least in broad outline. ...
The control architecture underlying human reaching has been established, at least in broad outline. ...
The control architecture underlying human reaching has been established, at least in broad outline. ...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Cata...
Human locomotion is a rhythmic task in which patterns of muscle activity are modulated by state-depe...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.This...
Item does not contain fulltextThis paper provides an update on the neural control of bipedal walking...
In prior work, a minimal mathematical model of bipedal walking was developed to investigate the expe...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
This paper provides an update on the neural control of bipedal walking in relation to bioinspired mo...
Theoretical studies and robotic experiments have shown that asymptotically stable periodic walking m...
Theoretical studies and robotic experiments have shown that asymptotically stable periodic walking m...
Theoretical studies and robotic experiments have shown that asymptotically stable periodic walking m...
Robotic studies have suggested a contribution of limit-cycle oscillation of the neuro-mechanical per...
The control architecture underlying human reaching has been established, at least in broad outline. ...
The control architecture underlying human reaching has been established, at least in broad outline. ...
The control architecture underlying human reaching has been established, at least in broad outline. ...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Cata...
Human locomotion is a rhythmic task in which patterns of muscle activity are modulated by state-depe...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.This...
Item does not contain fulltextThis paper provides an update on the neural control of bipedal walking...
In prior work, a minimal mathematical model of bipedal walking was developed to investigate the expe...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
This paper provides an update on the neural control of bipedal walking in relation to bioinspired mo...