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Impact of Visual Biofeedback of Trunk Sway Smoothness on Motor Learning during Unipedal Stance.
Cruz-Montecinos, Carlos; Cuesta-Vargas, Antonio; Muñoz, Cristian; Flores, Dante; Ellsworth, Joseph; Fuente, Carlos De la; Calatayud, Joaquín; Rivera-Lillo, Gonzalo; Soto-Arellano, Verónica; Tapia, Claudio; García-Massó, Xavier.
Afiliação
  • Cruz-Montecinos C; Clinical Biomechanics Laboratory, Department of Physical Therapy, University of Chile, 8380453 Santiago, Chile.
  • Cuesta-Vargas A; Biomechanics and Kinesiology Laboratory, Hospital San José, 8380419 Santiago, Chile.
  • Muñoz C; Department of Physiotherapy, Faculty of Heath Sciences, University of Malaga, 29071 Málaga, Spain.
  • Flores D; Institute of Biomedical Research in Malaga. IBIMA, 29010 Málaga, Spain.
  • Ellsworth J; School of Clinical Science, Faculty of Health Science, Queensland University Technology, Brisbane, QLD 4000, Australia.
  • Fuente C; Clinical Biomechanics Laboratory, Department of Physical Therapy, University of Chile, 8380453 Santiago, Chile.
  • Calatayud J; Clinical Biomechanics Laboratory, Department of Physical Therapy, University of Chile, 8380453 Santiago, Chile.
  • Rivera-Lillo G; Clinical Biomechanics Laboratory, Department of Physical Therapy, University of Chile, 8380453 Santiago, Chile.
  • Soto-Arellano V; Carrera de Kinesiología, Departamento de Cs. de la Salud, Facultad de Medicina, Pontificia Universidad Católica, 7820436 Santiago, Chile.
  • Tapia C; Laboratorio LIBFE, Escuela de Kinesiología, Universidad de los Andes, 7620086 Santiago, Chile.
  • García-Massó X; Centro de Salud Deportiva, Clínica Santa María, 7520378 Santiago, Chile.
Sensors (Basel) ; 20(9)2020 May 01.
Article em En | MEDLINE | ID: mdl-32370050
ABSTRACT
The assessment of trunk sway smoothness using an accelerometer sensor embedded in a smartphone could be a biomarker for tracking motor learning. This study aimed to determine the reliability of trunk sway smoothness and the effect of visual biofeedback of sway smoothness on motor learning in healthy people during unipedal stance training using an iPhone 5 measurement system. In the first experiment, trunk sway smoothness in the reliability group (n = 11) was assessed on two days, separated by one week. In the second, the biofeedback group (n = 12) and no-biofeedback group (n = 12) were compared during 7 days of unipedal stance test training and one more day of retention (without biofeedback). The intraclass correlation coefficient score 0.98 (0.93-0.99) showed that this method has excellent test-retest reliability. Based on the power law of practice, the biofeedback group showed greater improvement during training days (p = 0.003). Two-way mixed analysis of variance indicates a significant difference between groups (p < 0.001) and between days (p < 0.001), as well as significant interaction (p < 0.001). Post hoc analysis shows better performance in the biofeedback group from training days 2 and 7, as well as on the retention day (p < 0.001). Motor learning objectification through visual biofeedback of trunk sway smoothness enhances postural control learning and is useful and reliable for assessing motor learning.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Biorretroalimentação Psicológica / Tronco Limite: Adult / Humans / Male Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Biorretroalimentação Psicológica / Tronco Limite: Adult / Humans / Male Idioma: En Ano de publicação: 2020 Tipo de documento: Article