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Effects of 8-Week Electromyostimulation Training on Upper-Limb Muscle Activity and Respiratory Gas Analysis in Athletes with Disabilities

Bibliographic Data

ID15466833
AuthorsJong-Bin Kim (0000-0001-8744-9553, Silla University), Joonsung Park (0000-0003-0537-9657, Silla University), Jeong‐Ok Yang (Silla University), Young‐Soo Kim (0000-0003-1040-372X, Silla University), Kim In-Hyung (Silla University), Himchan Shim (Silla University), Changho Jang (Silla University), Min‐cheol Kim (0000-0001-8292-8117), Myeongcheol Kim, Bomjin Lee (Silla University, corresponding author)
Year2022
Volume20
Issue1
Pages299-299
Publication date2022-12-24
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph20010299
PMID36612622
OpenAlexW4313245981
LanguageEN
References cited2

This study was aimed at verifying the efficacy of EMS training by investigating the changes in upper-limb muscle functions and energy expenditure in athletes with disabilities after an 8-week intervention of EMS training. We compared variations in muscle activity, respiratory gas, and symmetry index (SI) after an 8-week intervention in eight professional male athletes with disabilities wearing an electromyostimulation (EMS) suit (age: 42.00 ± 8.67 years, height: 1.65 ± 0.16 m, weight: 64.00 ± 8.72 kg, career length: 11.75 ± 3.83 years). For EMS training, each participant wore an EMS suit. EMS was applied to the upper-limb muscles pectoralis major and triceps at 40 °C water temperature, with a 25 Hz frequency (duty cycle 10%) for 15 min, followed by a 5 Hz frequency (duty cycle 5%) for 5 min. The pre- and post-intervention measurements were taken in the same way at a pre-set time (for 1 h, twice a week) for 8 weeks. Training involved a seated chest press, and the muscle activity (pectoralis major, triceps, and antebrachial muscles), upper-limb SI, and respiratory gas variables (maximal oxygen consumption (VO2), carbon dioxide output (VCO2), respiratory quotient (RQ), metabolic equivalents (METs), and energy expenditure per min (Energy expended per minute; EEm)) were analyzed. Variations pre- and post-intervention across the measured variables were analyzed. Regarding the change in muscle activity, significant variations were found in the pectoralis major right (p < 0.004), pectoralis major left (p < 0.001), triceps right (p < 0.002), and antebrachial right (p < 0.001). Regarding left-to-right SI, a positive change was detected in the pectoralis major and triceps muscles. Additionally, respiratory gas analysis indicated significant variations in VO2 (p < 0.001), VCO2 (p < 0.001), METs (p < 0.001), and EEm (p < 0.001). EMS training improved muscle strength and respiratory gas variables and is predicted to contribute to enhanced muscle function and rehabilitation training for athletes with disabilities

Anesthesia · Animal science · Athletes · Biology · Pectoralis major muscle · Physical medicine and rehabilitation · Physical therapy · Respiratory quotient · Respiratory system · Cardiovascular and exercise physiology · Medicine · Muscle activation and electromyography studies · Sports Performance and Training · Internal Medicine · Surgery

  • Compendium of Physical Activities

    Barbara E Ainsworth, William L Haskell et al.•Medicine & Science in Sports &…•2000

  • Health benefits of physical activity

    Open Access•Darren E R Warburton•Canadian Medical Association…•2006

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