Literature DB >> 28326440

Effects of visual motion consistent or inconsistent with gravity on postural sway.

Priscilla Balestrucci1,2, Elena Daprati3,4, Francesco Lacquaniti5,3,4, Vincenzo Maffei5.   

Abstract

Vision plays an important role in postural control, and visual perception of the gravity-defined vertical helps maintaining upright stance. In addition, the influence of the gravity field on objects' motion is known to provide a reference for motor and non-motor behavior. However, the role of dynamic visual cues related to gravity in the control of postural balance has been little investigated. In order to understand whether visual cues about gravitational acceleration are relevant for postural control, we assessed the relation between postural sway and visual motion congruent or incongruent with gravity acceleration. Postural sway of 44 healthy volunteers was recorded by means of force platforms while they watched virtual targets moving in different directions and with different accelerations. Small but significant differences emerged in sway parameters with respect to the characteristics of target motion. Namely, for vertically accelerated targets, gravitational motion (GM) was associated with smaller oscillations of the center of pressure than anti-GM. The present findings support the hypothesis that not only static, but also dynamic visual cues about direction and magnitude of the gravitational field are relevant for balance control during upright stance.

Entities:  

Keywords:  Balance; Force plate; Motor control; Posture; Vestibular cortex; Visual motion

Mesh:

Year:  2017        PMID: 28326440     DOI: 10.1007/s00221-017-4942-3

Source DB:  PubMed          Journal:  Exp Brain Res        ISSN: 0014-4819            Impact factor:   1.972


  55 in total

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Authors:  Harrison L Bartlett; Lena H Ting; Jeffrey T Bingham
Journal:  Gait Posture       Date:  2013-08-02       Impact factor: 2.840

9.  Contributions of the human temporoparietal junction and MT/V5+ to the timing of interception revealed by transcranial magnetic stimulation.

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  5 in total

1.  Altered Insular and Occipital Responses to Simulated Vertical Self-Motion in Patients with Persistent Postural-Perceptual Dizziness.

Authors:  Roberta Riccelli; Luca Passamonti; Nicola Toschi; Salvatore Nigro; Giuseppe Chiarella; Claudio Petrolo; Francesco Lacquaniti; Jeffrey P Staab; Iole Indovina
Journal:  Front Neurol       Date:  2017-10-17       Impact factor: 4.003

2.  Seeing Gravity: Gait Adaptations to Visual and Physical Inclines - A Virtual Reality Study.

Authors:  Desiderio Cano Porras; Gabriel Zeilig; Glen M Doniger; Yotam Bahat; Rivka Inzelberg; Meir Plotnik
Journal:  Front Neurosci       Date:  2020-01-24       Impact factor: 4.677

3.  Control of structural redundancy from the head to trunk in the human upright standing revealed using a data-driven approach.

Authors:  Kazuya Tanaka; Soichiro Fujiki; Tomoaki Atomi; Yoriko Atomi; Wataru Takano; Katsuya Hasegawa; Akinori Nagano; Miho Shimizu
Journal:  Sci Rep       Date:  2022-08-01       Impact factor: 4.996

4.  Deep Neural Networks for Human's Fall-risk Prediction using Force-Plate Time Series Signal.

Authors:  M Savadkoohi; T Oladunni; L A Thompson
Journal:  Expert Syst Appl       Date:  2021-05-26       Impact factor: 8.665

Review 5.  Human Postural Control.

Authors:  Yury Ivanenko; Victor S Gurfinkel
Journal:  Front Neurosci       Date:  2018-03-20       Impact factor: 4.677

  5 in total

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