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Effects of small-volume soccer and vibration training on body composition, aerobic fitness, and muscular PCr kinetics for inactive

Luke J. Connolly [et al.] - Nama Orang;

Purpose: The present study investigated the effects of 16 weeks of small-volume, small-sided soccer training soccer group (SG, n ¼ 13) and oscillating whole-body vibration training vibration group (VG, n ¼ 17) on body composition, aerobic fitness, and muscle PCr kinetics in healthy inactive premenopausal women in comparison with an inactive control group (CO, n ¼ 14).
Methods: Training for SG and VG consisted of twice-weekly 15-min sessions with average heart rates (HRs) of w155 and 90 bpm respectively. Pre- and post-measurements of body composition (DXA), phosphocreatine (PCr) on- and off-kinetics, and HR measurements during standardised submaximal exercise were performed.
Results: After 16 weeks of training in SG, fat percentage was lowered ( p ¼ 0.03) by 1.7%  2.4% from 37.5%  6.9% to 35.8%  6.2% and the PCr decrease in the quadriceps during knee-extension ramp exercise was attenuated (4%  8%, p ¼ 0.04), with no changes in VG or CO (timegroup effect: p ¼ 0.03 and p ¼ 0.03). Submaximal exercise HR was also reduced in SG after 16 weeks of training (6%  5% of HRmax,p ¼ 0.01).
Conclusion: Short duration soccer training for 16 weeks appears to be sufficient to induce favourable changes in body composition and indicators of aerobic fitness and muscle oxidative capacity in untrained premenopausal women.

Keywords: Fat percentage; Heart rate; MRS; PCr kinetics; Small-sided soccer


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Informasi Detail
Judul Seri
Journal of Sport and Health Science
No. Panggil
-
Penerbit
: Shanghai University of Sport., 2014
Deskripsi Fisik
Journal of Sport and Health Science 3 (2014) 284e292
Bahasa
English
ISBN/ISSN
-
Klasifikasi
-
Tipe Isi
-
Tipe Media
-
Tipe Pembawa
-
Edisi
-
Subjek
Sport And Kesehatan
Info Detail Spesifik
-
Pernyataan Tanggungjawab
Wati/Agus
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  • FULL TEXT:Effects of small-volume soccer and vibration training on body composition, aerobic fitness, and muscular PCr kinetics for inactive
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