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Effects of integrative neuromuscular training on the gait biomechanics of children with overweight and obesity.
Molina-Garcia, Pablo; Molina-Molina, Alejandro; Smeets, Annemie; Migueles, Jairo H; Ortega, Francisco B; Vanrenterghem, Jos.
Afiliación
  • Molina-Garcia P; PROFITH "PROmoting FITness and Health Through PHYSICAL ACTIVITY" Research Group, Department of Physical Education and Sports, Faculty of Sport Sciences, University of Granada, Granada, Spain.
  • Molina-Molina A; Biohealth Research Institute, Physical Medicine and Rehabilitation Service, Virgen de las Nieves University Hospital, Granada, Spain.
  • Smeets A; Campus Universitario, Universidad San Jorge, Zaragoza, Spain.
  • Migueles JH; Research Group CTS-545 ERGOLAB "Sport Physical Activity and Ergonomy to Life Quality", Department of Physical and Sports Education, Faculty of Sports Science, University of Granada, Granada, Spain.
  • Ortega FB; Musculoskeletal Rehabilitation Research Group, Faculty of Kinesiology and Rehabilitation Sciences, KU Leuven, Leuven, Belgium.
  • Vanrenterghem J; PROFITH "PROmoting FITness and Health Through PHYSICAL ACTIVITY" Research Group, Department of Physical Education and Sports, Faculty of Sport Sciences, University of Granada, Granada, Spain.
Scand J Med Sci Sports ; 32(7): 1119-1130, 2022 Jul.
Article en En | MEDLINE | ID: mdl-35398912
ABSTRACT

OBJECTIVE:

To analyze whether 13 weeks of integrative neuromuscular training can benefit spatiotemporal and kinematic parameters of gait in children with overweight/obesity.

METHODS:

This is a non-randomized controlled trial. Fifty children (10.77 ± 1.24 years, 31 girls) with overweight/obesity were allocated to an exercise group (EG) (n = 25) that carried out a 13-week exercise program based on fundamental movement skills, strength activities and aerobic training, and a control group (CG) (n = 25) that followed their normal lifestyle. Spatiotemporal (i.e., cadence, stance and support times, step length, and stride width) and kinematic (i.e., hip, pelvis, knee, and ankle angles) parameters were evaluated under laboratory conditions through a 3D analysis. ANCOVA was used to test raw and z-score differences between the EG and CG at post-exercise, adjusting for pre-exercise values.

RESULTS:

The EG maintained their baseline stance and single-limb support times while the CG increased them during walking (groups' difference 3.1 and 1.9 centiseconds). The EG maintained baseline maximum foot abduction angle during the stance phase whereas the CG showed an increase (groups' difference 3.9º). Additional analyses on kinematic profiles demonstrated that the EG walked with similar pelvic tilt and ankle abduction angles at post-exercise, while the CG increased the pelvic anterior tilt in the whole stance phase (mean groups' difference 7.7º) and the ankle abduction angles in early- and mid-stance phases (mean groups' difference 4.6º). No changes were observed in the rest of spatiotemporal and kinematic parameters.

CONCLUSIONS:

The integrative neuromuscular training stopped the progression of some biomechanical alterations during walking in children with overweight/obesity. These findings could contribute to preventing common movement-derived musculoskeletal disorders in this population, as well as preserving an optimal mechanical efficiency during walking.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Sobrepeso / Marcha Tipo de estudio: Clinical_trials Límite: Child / Female / Humans Idioma: En Revista: Scand J Med Sci Sports Asunto de la revista: MEDICINA ESPORTIVA Año: 2022 Tipo del documento: Article País de afiliación: España

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Sobrepeso / Marcha Tipo de estudio: Clinical_trials Límite: Child / Female / Humans Idioma: En Revista: Scand J Med Sci Sports Asunto de la revista: MEDICINA ESPORTIVA Año: 2022 Tipo del documento: Article País de afiliación: España