The Effect of Physical Activity Level on Age-Related Differences in Responses to Optic Flow Perturbation during Human Walking
Wu, C.; Buurke, T. J. W.; den Otter, R.; Lamoth, C. J. C.; Veldman, M. P.
Show abstract
BackgroundHuman aging increases the reliance on vision for walking balance due to age-related declines in proprioceptive and vestibular function. Regular physical activity (PA) may reduce the reliance on visual input during walking. This study examined whether PA levels modulate age-related responses to perturbations of the optic flow that is crucial in the control of human locomotion. MethodsSixty active and inactive younger (YA and YI: 23.3{+/-}3.91 y) and older adults (OA and OI: 68.3{+/-}3.98 y; n=15 for each group) walked on a treadmill in front of a virtual hallway. The walking protocol consisted of 3-minute walking without, and 8-minute with mediolateral optic flow perturbation. Sacrum and heel marker positions and ground reaction forces were recorded. Power spectral density (PSD) of the mediolateral sacrum position and gait parameters were analyzed. ResultsThe PSD increased more in OA compared to OI adults (p=0.041) while YA and YI adults did not differ. Mean (and variability of) step width and mediolateral margin of stability increased irrespective of age and PA (all p<0.001). During the 8-minute perturbation, OA adults demonstrated greater decreases in PSD than the OI adults (p=0.039). Additionally, the variability in the mediolateral margin of stability reduced more in YA and OA adults compared to YI and OI adults (p=0.048). ConclusionHigher PA levels in OA adults were associated with stronger immediate responses in body sway to optic flow perturbations compared to older inactive and younger adults. This may support the beneficial effects of physical activity on age-related visual dependency during gait.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Gait adaptation to asymmetric hip stiffness applied by a robotic exoskeleton 97%
- Inertial sensor-based centripetal acceleration as a correlate for lateral margin of stability during walking and turning 97%
- Application of a novel force-field to manipulate the relationship between pelvis motion and step width in human walking 97%
Similar papers in this journal
- Muscle activity of cutting manoeuvres and soccer inside passing suggests an increased groin injury risk during these movements 96%
- The Ramp protocol: Uncovering individual differences in walking to an auditory beat using TeensyStep 96%
- Joint contact forces during barefoot, minimal and conventional shod running are highly individual 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.