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Gastrocnemius medialis contractile behavior is preserved during 30% body weight supported gait training

  • Rehabilitative body weight supported gait training aims at restoring walking function as a key element in activities of daily living. Studies demonstrated reductions in muscle and joint forces, while kinematic gait patterns appear to be preserved with up to 30% weight support. However, the influence of body weight support on muscle architecture, with respect to fascicle and series elastic element behavior is unknown, despite this having potential clinical implications for gait retraining. Eight males (31.9 ± 4.7 years) walked at 75% of the speed at which they typically transition to running, with 0% and 30% body weight support on a lower-body positive pressure treadmill. Gastrocnemius medialis fascicle lengths and pennation angles were measured via ultrasonography. Additionally, joint kinematics were analyzed to determine gastrocnemius medialis muscle–tendon unit lengths, consisting of the muscle's contractile and series elastic elements. Series elastic element length was assessed using a muscle–tendon unit model. Depending on whether data were normally distributed, a paired t-test or Wilcoxon signed rank test was performed to determine if body weight supported walking had any effects on joint kinematics and fascicle–series elastic element behavior. Walking with 30% body weight support had no statistically significant effect on joint kinematics and peak series elastic element length. Furthermore, at the time when peak series elastic element length was achieved, and on average across the entire stance phase, muscle–tendon unit length, fascicle length, pennation angle, and fascicle velocity were unchanged with respect to body weight support. In accordance with unchanged gait kinematics, preservation of fascicle–series elastic element behavior was observed during walking with 30% body weight support, which suggests transferability of gait patterns to subsequent unsupported walking.

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Metadaten
Verfasserangaben:Charlotte RichterORCiD, Bjoern Braunstein, Benjamin StäudleORCiD, Julia Attias, Alexander Suess, Tobias Weber, Katja N. Mileva, Joern Rittweger, David A. Green, Kirsten AlbrachtORCiD
DOI:https://doi.org/10.3389/fspor.2020.614559
ISSN:2624-9367
Titel des übergeordneten Werkes (Englisch):Frontiers in Sports and Active Living
Verlag:Frontiers
Verlagsort:Lausanne
Dokumentart:Wissenschaftlicher Artikel
Sprache:Englisch
Erscheinungsjahr:2021
Datum der Erstveröffentlichung:18.01.2021
Datum der Publikation (Server):11.12.2023
Freies Schlagwort / Tag:AlterG; gait; muscle fascicle behavior; rehabilitation; series elastic element behavior; ultrasound imaging; unloading; walking
Jahrgang:2021
Ausgabe / Heft:2
Umfang:Artikel 614559
Link:https://doi.org/10.3389/fspor.2020.614559
Zugriffsart:weltweit
Fachbereiche und Einrichtungen:FH Aachen / Fachbereich Medizintechnik und Technomathematik
FH Aachen / IfB - Institut für Bioengineering
open_access (DINI-Set):open_access
collections:Verlag / Frontiers
Lizenz (Deutsch): Creative Commons - Namensnennung