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[Static balance is controlled by a non-linear dynamic system]

P M Gagey1, J Martinerie, L Pezard

  • 1Institut de Posturologie, Paris. pmgagey@clubinternet.fr

Annales D'Oto-Laryngologie Et De Chirurgie Cervico Faciale : Bulletin De La Societe D'Oto-Laryngologie Des Hopitaux De Paris
|October 10, 1998
PubMed
Summary
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Non-linear dynamic methods offer superior analysis of postural control adaptation to corrective eyewear compared to conventional techniques. This highlights the non-linear nature of the postural system and its sensitivity to minor disturbances.

Area of Science:

  • Biomechanics
  • Systems Neuroscience
  • Ophthalmology

Context:

  • Postural control is crucial for daily activities.
  • Corrective eyewear can influence postural stability.
  • Evaluating adaptation to visual aids is important for patient care.

Purpose:

  • To compare the efficacy of conventional versus non-linear dynamic methods for analyzing postural control.
  • To investigate the adaptation of the postural system when wearing corrective glasses with or without prisms.

Summary:

  • Stabilometric signal analysis was employed to assess postural control adaptation.
  • Non-linear dynamic methods proved more effective than conventional techniques.
  • The study confirms the postural system's non-linear dynamics and sensitivity.

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Impact:

  • Advances understanding of the human postural control system.
  • Suggests non-linear dynamics are key to fine postural control.
  • Provides insights into the effects of visual interventions on balance.