The biomechanical parameters studied in non-specific chronic low back pain patients in a locomotion task have so far focused on straight line walking. Although locomotion is primarily an automated action composed of repetitive patterns allowing movement from one place to another, walkers must respond to the environmental demands.These modifications show a flexible and adaptive approach to the constraints of the environment. In this study, the investigators are particularly interested in a task of crossing between two pedestrians, which is a standardised task that has shown its interest in the study of perceptual-motor co-ordination. In particular, it allows to study the mutual adaptation of speed and orientation between the two walkers.
Study Type
OBSERVATIONAL
Enrollment
36
Functional test that reproduce a task of daily living.
University of Rennes 2
Rennes, France
RECRUITINGThreshold for motion adaptation
Thresholds of adaptation to movement will be identified by comparing the minimum crossing distance and the minimum predicted distance of crossing at the time the walkers first see each other.
Time frame: Clinical assessment at base line
Walking speed
Analysis of the walking speed of each walker for the control tests, i.e. where the walker has not encountered another walker.
Time frame: Clinical assessment at base line
Inversion of crossing order
mpd(t) was assigned according to the final crossing order between two walkers in such a way that allowed for a positive mpd (tcross). In doing so, a positive mpd(tsee) suggests that crossing order was preserved along the entire interaction. Alternatively, a negative mpd (tsee) is the result of an inversion in crossing order between the two walkers.
Time frame: Clinical assessment at base line
Contribution to collision avoidance
During the interaction period, a cumulative contribution must be made by both walkers to avoid a collision. Analysis of the contribution of each walker (speed and orientation).
Time frame: Clinical assessment at base line
Minimum Predicted Distance
Minimum Predicted Distance (mpd) represents the theoretical crossing distance between the future positions of the participants, based on a linear extrapolation of their trajectory given their current position and speed at time (t). Any variation in mpd(t) indicates that a movement adaptation to avoid a collision has taken place between two walkers.
Time frame: Clinical assessment at base line
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