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Medial gastrocnemius muscle fascicles shorten throughout stance during sprint acceleration

  • The compliant nature of distal limb muscle-tendon units is traditionally considered suboptimal in explosive movements when positive joint work is required. However, during accelerative running, ankle joint net mechanical work is positive. Therefore, this study aims to investigate how plantar flexor muscle-tendon behavior is modulated during fast accelerations. Eleven female sprinters performed maximum sprint accelerations from starting blocks, while gastrocnemius muscle fascicle lengths were estimated using ultrasonography. We combined motion analysis and ground reaction force measurements to assess lower limb joint kinematics and kinetics, and to estimate gastrocnemius muscle-tendon unit length during the first two acceleration steps. Outcome variables were resampled to the stance phase and averaged across three to five trials. Relevant scalars were extracted and analyzed using one-sample and two-sample t-tests, and vector trajectories were compared using statistical parametric mapping. We found that an uncoupling of muscle fascicle behavior from muscle-tendon unit behavior is effectively used to produce net positive mechanical work at the joint during maximum sprint acceleration. Muscle fascicles shortened throughout the first and second steps, while shortening occurred earlier during the first step, where negative joint work was lower compared with the second step. Elastic strain energy may be stored during dorsiflexion after touchdown since fascicles did not lengthen at the same time to dissipate energy. Thus, net positive work generation is accommodated by the reuse of elastic strain energy along with positive gastrocnemius fascicle work. Our results show a mechanism of how muscles with high in-series compliance can contribute to net positive joint work.

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Metadaten
Author:Amelie Werkhausen, Steffen Willwacher, Kirsten AlbrachtORCiD
DOI:https://doi.org/10.1111/sms.13956
ISSN:0905-7188 (Druckausgabe)
ISSN:1600-0838 (Onlineausgabe)
Parent Title (English):Scandinavian Journal of Medicine & Science in Sports
Publisher:Wiley-Blackwell
Place of publication:Oxford
Document Type:Article
Language:English
Year of Completion:2021
Date of the Publication (Server):2023/12/13
Tag:locomotion; muscle mechanics; running; sprint start; ultrasonography
Volume:31
Issue:7
First Page:1471
Last Page:1480
Link: https://doi.org/10.1111/sms.13956
Zugriffsart:weltweit
Institutes:FH Aachen / Fachbereich Medizintechnik und Technomathematik
FH Aachen / IfB - Institut für Bioengineering
collections:Verlag / Wiley-Blackwell
Open Access / Hybrid
Licence (German):License LogoCreative Commons - Namensnennung