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Yang, J. F. & Gorassini, M. Spinal and brain control of human walking: implications for retraining of walking.
In this paper, a novel dynamic channel model for on-body wireless communication during walking is proposed by utilizing a human walking model.
However, should the walking surface be vibrating, the characteristics of human walking could change to maximize comfort.
From human walking there is evidence that joint compliance plays an important role in energy efficient walking and running.
What kind of leg trajectories are selected during human walking?
Human walking involves the coordination of brain, nerves, and muscles.
Locomotion of the robot is similar to human walking.
To determine the VDV, loading associated to human walking was simulated.
In this paper we investigate the problem of recognising a person based on the rhythmic features of human walking.
Lightweight structures are sensitive to dynamic force generated by human walking and consequently can exhibit excessive vibration responses.
There is no human walking the earth who does not share this function of the body.
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