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Reliable and effective novel home-based training set-up for application of an evidence-based high-loading stimulus to improve triceps surae function.
Radovanovic, Goran; Kunz, Jona; Bohm, Sebastian; Arampatzis, Adamantios; Legerlotz, Kirsten.
Affiliation
  • Radovanovic G; Humboldt-Universität Zu Berlin, Institute of Sport Sciences, Movement Biomechanics, Berlin, Germany.
  • Kunz J; Medical School Hamburg - University of Applied Sciences and Medical University, Faculty of Health Sciences, Department Performance, Neuroscience, Therapy and Health, Hamburg, Germany.
  • Bohm S; Humboldt-Universität zu Berlin, Institute of Sport Sciences, Department of Training and Movement Sciences, Berlin, Germany.
  • Arampatzis A; Humboldt-Universität zu Berlin, Institute of Sport Sciences, Department of Training and Movement Sciences, Berlin, Germany.
  • Legerlotz K; Humboldt-Universität zu Berlin, Institute of Sport Sciences, Department of Training and Movement Sciences, Berlin, Germany.
J Sports Sci ; 39(24): 2786-2795, 2021 Dec.
Article in En | MEDLINE | ID: mdl-34378493
ABSTRACT
High-loading interventions aiming for muscle-tendon adaptations were so far implemented in on-site facilities. To make this evidence-based stimulus more accessible, we developed an easy-to-use sling-based training set-up for home-based Achilles tendon and triceps surae muscle strength training and assessed its reliability and effectiveness in healthy men. To assess reliability (n=11), intra-class correlation (ICC) and root mean square (RMS) differences of isometric maximum voluntary contraction (MVC) of the plantar flexors were used. Effectiveness was tested in a controlled intervention trial (n=12), applying one-legged high-loading intervention for 3 months with our mobile set-up, while the contralateral/untrained leg served as control, and assessing plantar flexor MVC, drop (DJ) and countermovement jump (CMJ) height. Reliability was excellent between (ICCB=0.935) and within session (ICCWs=0.940-0.967). The mean RMS difference between and within sessions was 5.3% and 4.7%, respectively. MVCs of the trained/intervention leg increased by 10.2±7% (P=0.004) (dynamometry) and 30.2±22.5% (mobile set-up) (P=0.012). MVC of the untrained/control leg did not change (P>0.05). DJ height increased (P=0.025; Dz=2.13) by 2.37±2.9cm. CMJ height (P>0.05) did not change. We recommend the evidence-based high-loading application with our novel home-based training set-up as reliable and effective improving strength and jump performance of the plantar flexor muscle-tendon unit.
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Full text: 1 Database: MEDLINE Main subject: Resistance Training / Leg Type of study: Clinical_trials Limits: Humans Language: En Journal: J Sports Sci Year: 2021 Type: Article Affiliation country: Germany

Full text: 1 Database: MEDLINE Main subject: Resistance Training / Leg Type of study: Clinical_trials Limits: Humans Language: En Journal: J Sports Sci Year: 2021 Type: Article Affiliation country: Germany