Literature DB >> 11378422

Hemodynamics as a possible internal mechanical disturbance to balance.

S Conforto1, M Schmid, V Camomilla, T D'Alessio, A Cappozzo.   

Abstract

The postural control system is assessed by observing body sway while the subject involved aims at maintaining a specified up-right posture. Internal masses generate internal reaction forces that constitute an internal mechanical stimulus that may contribute to cause segmental displacements, i.e. body sway. Thus, gaining knowledge about the amplitude and direction of these reaction forces would contribute to gain insights into the mechanisms that influence the maintenance of balance and into its control. The 3-D force vector that acts on the body centre of mass (COM) and is associated with the transient blood movement at each cardiac cycle was assessed in a population sample of 20 young adults during the maintenance of a quiet up-right posture. Typical patterns of the three components of this force vector were identified. Relevant parameters were selected and submitted to sample statistics. For a number of them, linear correlation with subject-specific parameters was found. The antero-posterior force component was characterised by a triphasic major wave, the peaks of which had values up to 0.40 N. The vertical component showed a repeatable triphasic wave with peak-to-peak values in the range 1.3-3.0 N. The medio-lateral component showed relatively low peak-to-peak values (in the range 0.05-0.10 N). The resultant vector had an amplitude that underwent several oscillations during the cardiac cycle and reached its maximal value in the range 0.6-1.7 N.

Mesh:

Year:  2001        PMID: 11378422     DOI: 10.1016/s0966-6362(01)00112-6

Source DB:  PubMed          Journal:  Gait Posture        ISSN: 0966-6362            Impact factor:   2.840


  12 in total

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2.  Evidence for reflex and perceptual vestibular contributions to postural control.

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4.  Significant role of the cardiopostural interaction in blood pressure regulation during standing.

Authors:  Da Xu; Ajay K Verma; Amanmeet Garg; Michelle Bruner; Reza Fazel-Rezai; Andrew P Blaber; Kouhyar Tavakolian
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5.  Human postural sway results from frequent, ballistic bias impulses by soleus and gastrocnemius.

Authors:  Ian D Loram; Constantinos N Maganaris; Martin Lakie
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Review 6.  Revisiting the body-schema concept in the context of whole-body postural-focal dynamics.

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7.  The Effect of Continuous and Discretized Presentations of Concurrent Augmented Visual Biofeedback on Postural Control in Quiet Stance.

Authors:  Carmen D'Anna; Maurizio Schmid; Daniele Bibbo; Maurizio Bertollo; Silvia Comani; Silvia Conforto
Journal:  PLoS One       Date:  2015-07-21       Impact factor: 3.240

8.  Smooth enlargement of human standing sway by instability due to weak reaction floor and noise.

Authors:  Tetsuro Funato; Shinya Aoi; Nozomi Tomita; Kazuo Tsuchiya
Journal:  R Soc Open Sci       Date:  2016-01-06       Impact factor: 2.963

9.  Learning an intermittent control strategy for postural balancing using an EMG-based human-computer interface.

Authors:  Yoshiyuki Asai; Shota Tateyama; Taishin Nomura
Journal:  PLoS One       Date:  2013-05-22       Impact factor: 3.240

10.  Postural control during quiet bipedal standing in rats.

Authors:  Tetsuro Funato; Yota Sato; Soichiro Fujiki; Yamato Sato; Shinya Aoi; Kazuo Tsuchiya; Dai Yanagihara
Journal:  PLoS One       Date:  2017-12-15       Impact factor: 3.240

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