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Titre : | Abdominal wall tension increases using Dynamic Neuromuscular Stabilization principles in different postural positions (2022) |
Auteurs : | Katerina Madle ; Petr Svoboda ; Martin Stribrny ; Jakub Novak ; Pavel Kolar ; Andrew Busch ; Alena Kobesova ; Petr Bitnar |
Type de document : | Article |
Dans : | Musculoskeletal Science and Practice (Vol. 62, December 2022) |
Article en page(s) : | 102655 |
Note générale : | https://doi.org/10.1016/j.msksp.2022.102655 |
Langues: | Anglais |
Descripteurs : |
HE Vinci Posture |
Mots-clés: | Stabilisation posturale ; Pression intra-abdominale ; Tension de la paroi abdominale ; Capteurs de pression ; Stabilisation neuromusculaire dynamique |
Résumé : | Background Intra-abdominal pressure (IAP) is an important mechanism stabilizing the spine and trunk. IAP regulation depends on the coordination of abdominal muscles, diaphragm and pelvic floor muscles. Objective To determine the differences in abdominal wall tension (AWT) of various postural positions, first without any correction, then after verbal and manual instructions according to Dynamic Neuromuscular Stabilization (DNS) principles. Methods In a cross-sectional observational study, thirty healthy individuals (mean age = 22.73 + 1.91 years) were fitted with two Ohmbelt sensors contralaterally above the inguinal ligament and in the upper lumbar triangle. AWT was measured during five postural positions: sitting, supine with legs raised, squat, bear and hang position. First, spontaneous AWT was measured, then again after manual and verbal instructions following DNS principles. Results AWT increased significantly with DNS instructions compared to spontaneous activation. Both sensors recorded significant increases (p |
Disponible en ligne : | Oui |
En ligne : | https://login.ezproxy.vinci.be/login?url=https://www.sciencedirect.com/science/article/pii/S2468781222001552 |