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Increasing Visual Biofeedback Scale Changes Postural Control Complexity.
Lucas Michaud1, Fanie Laniel1, Yves Lajoie2
1School of Human Kinetics, University of Ottawa, 125 University St, Ottawa, On, K1N6N5, Canada.
Applied Psychophysiology and Biofeedback
|January 20, 2024
Summary
Visual biofeedback (vFB) enhances postural control by increasing center of pressure (COP) complexity. Magnified visual biofeedback (vFB) leads to more irregular COP sway and higher frequency shifts, improving balance.
Area of Science:
- Biomechanics
- Human Motor Control
- Neuroscience
Background:
- Visual biofeedback (vFB) is known to improve postural control during quiet stance.
- Improvements are typically measured by reduced center of pressure (COP) sway.
- The impact of vFB scaling on COP complexity is not well understood.
Purpose of the Study:
- To investigate the effect of different visual biofeedback (vFB) magnitudes on center of pressure (COP) complexity during quiet stance.
- To explore how scaling of vFB influences postural control beyond traditional sway measures.
Main Methods:
- Twenty young adults performed static upright posture tasks with varying visual biofeedback (vFB) magnitudes: no feedback (NoFB), vFB magnified by 1 (vFB1), 5 (vFB5), and 10 (vFB10).
- Traditional COP variables (standard deviation, mean velocity, sway area) and complexity measures (sample entropy, wavelet analysis) were analyzed.
Main Results:
- Visual biofeedback scaling confirmed improvements in postural control via traditional COP variables.
- Increasing vFB scale (1:5 and 1:10) led to significantly more irregular COP sway.
- Complexity analysis revealed a shift towards higher frequencies in COP data with magnified vFB.
Conclusions:
- Visual biofeedback scaling not only improves postural control but also alters the complexity of center of pressure dynamics.
- Findings suggest that increased COP complexity, characterized by irregularity and higher frequencies, is a key mechanism through which magnified vFB enhances postural stability.

