Efficacy of manual versus free-weight training to improve maximal strength and performance for microgravity conditions

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Deutscher übersetzter Titel:Einfluss von manuellem Training gegenüber Training mit freien Gewichten zur Verbesserung der Maximalkraft und Leistungsfähigkeit in der Schwerelosigkeit
Autor:Behringer, Michael; Schüren, Thomas; McCourt, Molly; Mester, Joachim
Erschienen in:Journal of sports sciences
Veröffentlicht:34 (2016), 7, S. 630-636, Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Zeitschriftenartikel
Medienart: Gedruckte Ressource Elektronische Ressource (online)
Sprache:Englisch
ISSN:0264-0414, 1466-447X
DOI:10.1080/02640414.2015.1066025
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Erfassungsnummer:PU201603001205
Quelle:BISp

Abstract des Autors

We tested a simple and compact device designed for manual resistance training in conditions of microgravity (Self-Powered Rope Trainer Duo (SPoRT Duo)) to increase muscle performance. Twenty-four participants (20.8 ± 2.1 years) were randomly assigned to a manual resistance group (n = 12) and a free-weight group (n = 12). Participants performed eight exercises (three sets; 8–12 efforts) either with free weights or the SPoRT Duo twice a week for 6 weeks. Maximal isometric force of trunk flexion, back extension and chest press increased (P at least 0.01, d at least 0.52) both in the manual resistance group (18.4% ± 15.0%; 32.7% ± 22.7%; 15.3% ± 9.7%) and free-weight group (18.0% ± 13.9%; 26.6% ± 28.9%; 13.3% ± 7.6%). The change in maximal isometric force of wide grip row in both groups (d at best 0.38) did not reach statistical significance (P at best 0.08). The squat one-repetition-maximum increased in the manual resistance group (29.8% ± 22.1%) and the free-weight group (32.4% ± 26.6%). Jump height, determined by a jump-and-reach test, increased in the free-weight group (9.8% ± 13.2%) but not in the manual resistance group (2.0% ± 8.5%). Manual resistance training was equally effective in increasing strength as traditional resistance training with free weights. This apparatus is a useful addition to current in-flight exercise systems.