Literature DB >> 30253531

Microchaos in human postural balance: Sensory dead zones and sampled time-delayed feedback.

John G Milton1, Tamas Insperger2, Walter Cook1, David Money Harris3, Gabor Stepan4.   

Abstract

Models for the stabilization of an inverted pendulum figure prominently in studies of human balance control. Surprisingly, fluctuations in measures related to the vertical displacement angle for quietly standing adults with eyes closed exhibit chaos. Here we show that small-amplitude chaotic fluctuations ("microchaos") can be generated by the interplay between three essential components of human neural balance control, namely time-delayed feedback, a sensory dead zone, and frequency-dependent encoding of force. When the sampling frequency of the force encoding is decreased, the sensitivity of the balance control to changes in the initial conditions increases. The sampled, time-delayed nature of the balance control may provide insights into why falls are more common in the very young and the elderly.

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Year:  2018        PMID: 30253531     DOI: 10.1103/PhysRevE.98.022223

Source DB:  PubMed          Journal:  Phys Rev E        ISSN: 2470-0045            Impact factor:   2.529


  3 in total

1.  Change in task conditions leads to changes in intermittency in intermittent feedback control employed by CNS in control of human stance.

Authors:  Ranjita Dash; Harish J Palanthandalam-Madapusi
Journal:  Biol Cybern       Date:  2022-04-02       Impact factor: 3.072

2.  Response to perturbation during quiet standing resembles delayed state feedback optimized for performance and robustness.

Authors:  Ambrus Zelei; John Milton; Gabor Stepan; Tamas Insperger
Journal:  Sci Rep       Date:  2021-05-31       Impact factor: 4.379

3.  Direct estimation of the parameters of a delayed, intermittent activation feedback model of postural sway during quiet standing.

Authors:  Kevin L McKee; Michael C Neale
Journal:  PLoS One       Date:  2019-09-17       Impact factor: 3.240

  3 in total

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