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Research Article

Short-Term Repeatability of Stabilometric Assessments

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Pages 123-128 | Received 23 Oct 2015, Accepted 31 Jan 2016, Published online: 24 Jun 2016

REFERENCES

  • Amaral, A. P., Politti, F., Hage, Y. E., Arruda, E. E. C., Amorin, C. F., & Biasotto-Gonzales, D. A. (2013). Immediate effect of nonspecific mandibular mobilization on postural control in subjects with temporomandibular disorder: A single-blind, randomized, controlled clinical trial. Brazilian Journal of Physical Therapy, 17, 121–127.
  • Asseman, F. B., Caron, O., & Crémieux, J. (2008). Are there specific conditions for which expertise in gymnastics could have an effect on postural control and performance? Gait and Posture, 27, 76–81.
  • Baldini, A., Nota, A., Assi, V., Ballanti, F., & Cozza, P. (2013). Intersession reliability of a posturo-stabilometric test, using a force platform. Journal of Electromyography and Kinesiology, 23, 1474–1479.
  • Barozzi, S., Socci, M., Soi, D., Di Berardino, F., Fabio, G., Forti, S., … Cesarani, A. (2014). Reliability of postural control measures in children and young adolescents. European Archives of Otorhinolaryngology, 271, 2069–2077.
  • Bekkers, E. M., Dockx, K., Heremans, E., Vercruysse, S., Verschueren, S. M., Mirelman, A., & Nieuwboer, A. (2014). The contribution of proprioceptive information to postural control in elderly and patients with Parkinson's disease with a history of falls. Frontiers in Human Neuroscience, 24, 939.
  • Bougard, C., Lepelley, M. C., & Davenne, D. (2011). The influences of time-of-day and sleep deprivation on postural control. Experimental Brain Research, 209, 109–115.
  • Bruniera, C. A. V., Rogerio, F. R. P. G., & Rodacki, A. L. F. (2013). Stabilometric response during single-leg stance after lower limb muscle fatigue. Brazilian Journal of Physical Therapy, 17, 464–469.
  • Chapman, D. W., Needham, K. J., Allison, G. T., Lay, B., & Edwards, D. J. (2008). Effects of experience in a dynamic environment on postural control. British Journal of Sports Medicine, 42, 16–21.
  • Cohen, J. (1992). A power primer. Psychological Bulletin, 112, 155–159.
  • Deschamps, T., Magnard, J., & Cornu, C. (2013). Postural control as a function of time-of-day: Influence of a prior strenuous running exercise or demanding sustained-attention task. Journal of NeuroEngineering and Rehabilitation, 1, 10–26.
  • Doheny, E. P., Greene, B. R., Foran, T., Cunningham, C., Fan, C. W., & Kenny, R. A. (2012). Diurnal variations in the outcomes of instrumented gait and quiet standing balance assessments and their association with falls history. Physiological Measures, 33, 361–373.
  • Dokka, K., Kenyon, R. V., Keshner, E. A., & Kording, K. P. (2010). Self versus environment motion in postural control. PLoS Computational Biology, 6, e1000680.
  • Duarte, M., & Freitas, M. S. F. (2005). Speed–accuracy trade-off in voluntary postural movements. Motor Control, 9, 180–196.
  • Ferrario, V. F., Sforza, C., Schmitz, J. H., & Taroni, A. (1996). Occlusion and center of foot pressure variation: Is there a relationship? Journal of Prosthetic Dentistry, 76, 302–308.
  • Freyler, K., Weltin, E., Gollhofer, A., & Ritzmann, R. (2014). Improved postural control in response to a 4-week balance training with partially unloaded bodyweight. Gait and Posture, 40, 291–296.
  • Gasq, D., Labrunée, M., Amarantini, D., Dupui, P., Montoya, R., & Marque, P. (2014). Between-day reliability of centre of pressure measures for balance assessment in hemiplegic stroke patients. Journal of NeuroEngineering and Rehabilitation, 21, 11–39.
  • Gribble, P. A., Tucker, W. S., & White, P. A. (2007). Time-of-day influences on static and dynamic postural control. Journal of Athletic Training, 42, 35–41.
  • Jorgensen, M. G., Rathleff, M. S., Laessoe, U., Caserotti, P., Nielsen, O. B., & Aagaard, P. (2012). Time-of-day influences postural balance in older adults. Gait and Posture, 35, 653–657.
  • Kwon, Y. H., Choi, Y. W., Nam, S. H., & Lee, M. H. (2014). The influence of time of day on static and dynamic postural control in normal adults. Journal of Physical Therapy Science, 26, 409–412.
  • Lin, D., Seol, H., Nussbaum, M. A., & Madigan, M. L. (2008). Reliability of COP-based postural sway measures and age-related differences. Gait and Posture, 8, 337–342.
  • Masani, K., Vette, A. H., Abe, M. O., & Nakazawa, K. (2014). Center of pressure velocity reflects body acceleration rather than body velocity during quiet standing. Gait and Posture, 39, 946–952.
  • Mon-Williams, M., & Bingham, G. P. (2007). Calibrating reach distance to visual targets. Journal of Experimental Psychology: Human Perceptual and Performance, 33, 645–656.
  • Morris, S. B. (2008). Estimating effect sizes from pretest-posttest-control group designs. Organizational Research Methods, 11, 364–386.
  • Pagnacco, G., Carrick, F. R., Wright, C. H., & Oggero, E. (2015). Between-subjects differences of within-subject variability in repeated balance measures: Consequences on the minimum detectable change. Gait and Posture, 41, 136–140.
  • Perinetti, G., Contardo, L., Silvestrini-Biavati, A., Perdoni, L., & Castaldo, A. (2010). Dental malocclusion and body posture in young subjects: A multiple regression study. Clinics (Sao Paulo), 65, 689–695.
  • Perinetti, G., Marsib, L., Castaldo, A., & Contardo, L. (2012). Is postural platform suited to study correlations between the masticatory system and body posture? A study of repeatability and a meta-analysis of reported variations. Progress in Orthodontics, 13, 273–280.
  • Ruhe, A., Fejer, R., & Walker, B. (2010). The test–retest reliability of centre of pressure measures in bipedal static task conditions—A systematic review of the literature. Gait and Posture, 32, 436–445.
  • Saripalle, S. K., Paiva, G. C., Cliett, T. C. III, Derakhshani, R. R., King, G. W., & Lovelace, C. T. (2014). Classification of body movements based on posturographic data. Human Movement Science, 33, 238–250.
  • Sforza, C., Eid, L., & Ferrario, V. F. (2000). Sensorial afferents and center of foot pressure in blind and sighted adults. Journal of Visual Impairment and Blindness, 94, 97–107.
  • Sforza, C., Grassi, G. P., Michielon, G., Pizzini, G., & Ferrario, V. F. (2001). The influence of the practice of different sports on the maintenance of equilibrium on a tilting platform. Italian Journal of Sport Science, 8, 5–9.
  • Sforza, C., Grassi, G. P., Turci, M., Fragnito, N., Pizzini, G., & Ferrario, V. F. (2003). Influence of training on maintenance of equilibrium on a tilting platform. Perceptual and Motor Skills, 96, 127–136.
  • Sipko, T., & Kuczyński, M. (2013). The effect of chronic pain intensity on the stability limits in patients with low back pain. Journal of Manipulative and Physiological Therapeutics, 36, 612–618.
  • Sturnieks, D. L., Arnold, R., & Lord, S. R. (2011). Validity and reliability of the sway meter device for measuring postural sway. BMC Geriatrics, 11, 63.
  • Taylor, M. R., Sutton, E. E., Diestelkamp, W. S., & Bigelow, K. E. (2015). Subtle differences during posturography testing can influence postural sway results: The effects of talking, time before data acquisition, and visual fixation. Journal of Applied Biomechanics, 31, 324–329.
  • Winter, D. (1990). Biomechanics and motor control of human movement. New York, NY: Wiley.

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