1,383
Views
15
CrossRef citations to date
0
Altmetric
OTONEUROLOGY

The dominant foot affects the postural control mechanism: examination by body tracking test

, , , , &
Pages 1146-1150 | Received 18 May 2014, Accepted 25 Jun 2014, Published online: 25 Sep 2014

References

  • Angunsri N, Ishikawa K, Yin M, Omi E, Shibata Y, Saito T, et al. Gait instability caused by vestibular disorders – analysis by tactile sensor. Auris Nasus Larynx 2011;38:462–8.
  • Ishikawa K, Wang Y, Wong WH, Shibata Y, Itasaka Y. Gait instability in patients with acoustic neuroma. Acta Otolaryngol 2004;124:486–9.
  • Laurens J, Awai L, Bockisch CJ, Hegemann S, van Hedel HJ, Dietz V, et al. Visual contribution to postural stability: interaction between target fixation or tracking and static or dynamic large-field stimulus. Gait Posture 2010;31:37–41.
  • Bobrova EV, Kucher VI, Levik IuS, Bogacheva IN. [Nonlinear analysis of the dynamics of the human balance control system during fixation and smooth pursuit of visual target]. Biofizika 2007;52:355–61; in Russian.
  • Koslucher F, Wade MG, Nelson B, Lim K, Chen FC, Stoffregen TA. Nintendo Wii Balance Board is sensitive to effects of visual tasks on standing sway in healthy elderly adults. Gait Posture 2012;36:605–8.
  • Greffou S, Bertone A, Hanssens JM, Faubert J. Development of visually driven postural reactivity: a fully immersive virtual reality study. J Vis 2008;8:15.1–10.
  • Ledin T, Odkvist LM. Visual influence on postural reactions to sudden antero-posterior support surface movements. Acta Otolaryngol 1991;111:813–19.
  • Wall C 3rd, Wrisley DM, Statler KD. Vibrotactile tilt feedback improves dynamic gait index: a fall risk indicator in older adults. Gait Posture 2009;30:16–21.
  • Aoki H, Demura S, Kawabata H, Sugiura H, Uchida Y, Xu N, et al. Evaluating the effects of open/closed eyes and age-related differences on center of foot pressure sway during stepping at a set tempo. Adv Aging Res 2012;1:72–7.
  • Balaguer García R, Pitarch Corresa S, Baydal Bertomeu JM, Morales Suárez-Varelaca MM. Static posturography with dynamic tests. Usefulness of biomechanical parameters in assessing vestibular patients. Acta Otorhinolaryngol Esp 2012;63:332–8.
  • Yoshida T, Ikemiyagi F, Ikemiyagi Y, Tnaka T, Takanami T, Tamura Y, et al. The tracking axis of the body tracking test. Nihon Jibiinkoka Gakkai Kaiho 2013;116:1308–13.
  • Schneiders AG, Sullivan SJ, O’Malley KJ, Clarke SV, Knappstein SA, Taylor LJ. A valid and reliable clinical determination of footedness. PM R 2010;2:835–41.
  • Black FO. Clinical status of computerized dynamic posturography in neurology. Curr Opin Otolaryngol Head Neck Surg 2001;9:314–18.
  • Kobori S, Yoneda T. Analysis of tracking motion in standing posture using multiple regression analysis method. IEICE Trans 1990;E73:1824–6.
  • Boonstra TA, Schouten AC, van der Kooij H. Identification of the contribution of the ankle and hip joints to multi-segmental balance control. J Neuroeng Rehabil 2013;10:23.
  • Yoshida T. The view of a right-handed and a left-handed person. Equilibrium Res 2010;69:147–50.
  • Buneo CA, Andersen RA. Integration of target and hand position signals in the posterior parietal cortex: effects of workspace and hand vision. J Neurophysiol 2012;108:187–99.
  • Vesia M, Yan X, Henriques DY, Sergio LE, Crawford JD. Transcranial magnetic stimulation over human dorsal-lateral posterior parietal cortex disrupts integration of hand position signals into the reach plan. J Neurophysiol 2008;100:2005–14.
  • Wang Z1, Newell KM. Footedness exploited as a function of postural task asymmetry. Laterality 2013;18:303–18.
  • De Agostini M, Dellatolas G. Lateralities in normal children ages 3 to 8 and their role in cognitive performances. Dev Neuropsychol 2001;20:429–44.