© 2017. Published by The Company of Biologists Ltd Studies of disturbed human locomotion often focus on the dynamics of the gait when either posture, movement or surface is perturbed. Yet, the interaction effects of variation of trunk posture and ground level on kinetic behaviour of able-bodied gait have not been explored. For 12 participants we investigated the kinetic behaviour, as well as velocity and contact time, across four steps including an unperturbed step on level ground, pre-perturbation, perturbation (10-cm drop) and post-perturbation steps while walking with normal speed with four postures: regular erect, with 30°, 50° and maximal sagittal trunk flexion (70°). Two-way repeated measures ANOVAs detected significant interactions o...
We investigated the neuromuscular contributions to kinematic variability and thus step to step adjus...
Human erect locomotion is unique among living primates. Evolution selected specific biomechanical fe...
Balance is critical for human posture control when standing upright and during cyclic locomotor task...
Studies of disturbed human locomotion often focus on the dynamics of the gait when either posture, m...
Interactions between trunk orientation and gait kinetics are proposed to be inevitable for maintaini...
Though the effects of imposed trunk posture on human walking have been studied, less is known about ...
© 2018 Elsevier B.V. Background: Although alteration in trunk orientation and ground level potential...
Though the effects of imposed trunk posture on human walking have been studied, less is known about ...
The dynamic margin of stability (MoS), defined as the difference between the anterior boundary of th...
© 2018 Elsevier B.V. This study aimed to explore the control of dynamic stability of the imposed tru...
During walking, uneven terrain alters the action of the ground reaction force from stride to stride....
The purpose of this study was to quantify the magnitude and time course of dynamic balance control a...
It has been shown that an original attitude in forward or backward inclination of the trunk is maint...
In this work, we gained more insight into the functional role of trunk in human locomotion through t...
Previously it has been shown that constraining step width in gait coincides with decreased trunk dis...
We investigated the neuromuscular contributions to kinematic variability and thus step to step adjus...
Human erect locomotion is unique among living primates. Evolution selected specific biomechanical fe...
Balance is critical for human posture control when standing upright and during cyclic locomotor task...
Studies of disturbed human locomotion often focus on the dynamics of the gait when either posture, m...
Interactions between trunk orientation and gait kinetics are proposed to be inevitable for maintaini...
Though the effects of imposed trunk posture on human walking have been studied, less is known about ...
© 2018 Elsevier B.V. Background: Although alteration in trunk orientation and ground level potential...
Though the effects of imposed trunk posture on human walking have been studied, less is known about ...
The dynamic margin of stability (MoS), defined as the difference between the anterior boundary of th...
© 2018 Elsevier B.V. This study aimed to explore the control of dynamic stability of the imposed tru...
During walking, uneven terrain alters the action of the ground reaction force from stride to stride....
The purpose of this study was to quantify the magnitude and time course of dynamic balance control a...
It has been shown that an original attitude in forward or backward inclination of the trunk is maint...
In this work, we gained more insight into the functional role of trunk in human locomotion through t...
Previously it has been shown that constraining step width in gait coincides with decreased trunk dis...
We investigated the neuromuscular contributions to kinematic variability and thus step to step adjus...
Human erect locomotion is unique among living primates. Evolution selected specific biomechanical fe...
Balance is critical for human posture control when standing upright and during cyclic locomotor task...