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Updated: May 23, 2026

Experimental Methods to Study Human Postural Control
Published on: September 11, 2019
Robots in human biomechanics--a study on ankle push-off in walking
Daniel Renjewski1, André Seyfarth
1Lauflabor Locomotion Laboratory, Friedrich-Schiller-Universität Jena, JenTower 18.OG, Leutragraben 1, 07743 Jena, Germany. renjewski@ieee.org
Abstract:
In biomechanics, explanatory template models are used to identify the basic mechanisms of human locomotion. However, model predictions often lack verification in a realistic environment. We present a method that uses template model mechanics as a blueprint for a bipedal robot and a corresponding computer simulation. The hypotheses derived from template model studies concerning the function of heel-off in walking are analysed and discrepancies between the template model and its real-world anchor are pointed out. Neither extending the ground clearance of the swinging leg nor an impact reduction at touch-down as an effect of heel lifting was supported by the experiments. To confirm the relevance of the experimental findings, a comparison of robot data to human walking data is discussed and we speculate on an alternative explanation of heel-off in human walking, i.e. that the push-off powers the following leg swing.
