Effects of 4-week circuit strength combined with blood flow restriction training on muscle status and performance in Taekwondo athletes
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Abstract
This study explored the effects of a 4-week circuit strength training with blood flow restriction on Taekwondo athletes. Six male athletes (age 20.6 ± 1.85, height 184.3 ± 7.63 cm, training duration 7.5 ± 2.07 years) were assessed for explosive strength, muscle recruitment, and sport-specific skills. The regimen encompassed evaluations of lower limb power, Isokinetic strength, force via electronic kicks, and Tensiomyography (TMG) measurements pre-and post-training. Outcomes revealed enhanced jumping abilities, improved knee muscles, and superior kicking skills. There was a notable increase in muscle fibre recruitment and a shift towards type II muscle fibres. Medial thigh muscle displacement showed a positive correlation with jump duration, while lateral thigh muscles indicated a connection with kick numbers. The regimen notably improved explosive power, muscle fibre distribution, and reduced muscle contraction times. Yet, no significant changes in lower limb bilateral symmetry or the link between TMG parameters and athletic prowess were observed.
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Abe, T., Fujita, S., Nakajima, T., Sakamaki, M., Ozaki, H., Ogasawara, R., Sugaya, M., Kudo, M., Kurano, M., Yasuda, T., Sato, Y., Ohshima, H., Mukai, C., & Ishii, N. (2010). Effects of Low-Intensity Cycle Training with Restricted Leg Blood Flow on Thigh Muscle Volume and VO2MAX in Young Men. Journal of Sports Science & Medicine, 9(3), 452-458.
Abe, T., Kearns, C. F., & Sato, Y. (2006). Muscle size and strength are increased following walk training with restricted venous blood flow from the leg muscle, Kaatsu-walk training. Journal of Applied Physiology (Bethesda, Md.: 1985), 100(5), 1460-1466. https://doi.org/10.1152/japplphysiol.01267.2005
Abe, T., Yasuda, T., Midorikawa, T., Sato, Y., Kearns, C., Inoue, K., Koizumi, K., & Ishii, N. (2005). Skeletal muscle size and circulating IGF-1 are increased after two weeks of twice daily "KAATSU" resistance training. International Journal of KAATSU Training Research, 1. https://doi.org/10.3806/ijktr.1.6
Belli, G., Marini, S., Mauro, M., Maietta Latessa, P., & Toselli, S. (2022). Effects of Eight-Week Circuit Training with Core Exercises on Performance in Adult Male Soccer Players. European Journal of Investigation in Health, Psychology and Education, 12(9), 1244-1256. https://doi.org/10.3390/ejihpe12090086
Cook, C. J., Kilduff, L. P., & Beaven, C. M. (2014). Improving strength and power in trained athletes with 3 weeks of occlusion training. International Journal of Sports Physiology and Performance, 9(1), 166-172. https://doi.org/10.1123/ijspp.2013-0018
Dahmane, R., Djordjevic, S., & Smerdu, V. (2006). Adaptive potential of human biceps femoris muscle demonstrated by histochemical, immunohistochemical and mechanomyographical methods. Medical & Biological Engineering & Computing, 44(11), 999-1006. https://doi.org/10.1007/s11517-006-0114-5
de Paula Simola, R. Á., Harms, N., Raeder, C., Kellmann, M., Meyer, T., Pfeiffer, M., & Ferrauti, A. (2015). Assessment of neuromuscular function after different strength training protocols using tensiomyography. Journal of Strength and Conditioning Research, 29(5), 1339-1348. https://doi.org/10.1519/JSC.0000000000000768
Ditroilo, M., Smith, I. J., Fairweather, M. M., & Hunter, A. M. (2013). Long-term stability of tensiomyography measured under different muscle conditions. Journal of Electromyography and Kinesiology: Official Journal of the International Society of Electrophysiological Kinesiology, 23(3), 558-563. https://doi.org/10.1016/j.jelekin.2013.01.014
Francis, A. A., & Lohar, D. N. (2022). Effect of Circuit Training Program on Motor Fitness Components and Skill Abilities of Under-19 Football Players. 12(3).
Gao, J., & Yu, L. (2023). Effects of concurrent training sequence on VO2max and lower limb strength performance: A systematic review and meta-analysis. Frontiers in Physiology, 14. https://doi.org/10.3389/fphys.2023.1072679
García-García, O., Serrano-Gómez, V., Hernández-Mendo, A., & Tapia-Flores, A. (2016). Assessment of the in-season changes in mechanical and neuromuscular characteristics in professional soccer players. The Journal of Sports Medicine and Physical Fitness, 56(6), 714-723.
Gil, S., Loturco, I., Tricoli, V., Ugrinowitsch, C., Kobal, R., Abad, C. C. C., & Roschel, H. (2015). Tensiomyography parameters and jumping and sprinting performance in Brazilian elite soccer players. Sports Biomechanics, 14(3), 340-350. https://doi.org/10.1080/14763141.2015.1062128
Godawa, T. M., Credeur, D. P., & Welsch, M. A. (2012). Influence of compressive gear on powerlifting performance: Role of blood flow restriction training. Journal of Strength and Conditioning Research, 26(5), 1274-1280. https://doi.org/10.1519/JSC.0b013e3182510643
Guo Q. (2021). The impact of electronic protective gear use on the development of competitive taekwondo sports training. Research on Innovations in Ice Snow Sports, 15, 159-160.
Jin B., & Liu Q. (2012). An analysis of the opening and first scoring characteristics of the men's taekwondo competition at the 29th Olympic Games. Journal of Chengdu Institute of Physical Education, 38(6), 56-59.
Karabulut, M., Bemben, D. A., Sherk, V. D., Anderson, M. A., Abe, T., & Bemben, M. G. (2011). Effects of high-intensity resistance training and low-intensity resistance training with vascular restriction on bone markers in older men. European Journal of Applied Physiology, 111(8), 1659-1667. https://doi.org/10.1007/s00421-010-1796-9
Karabulut, M., McCarron, J., Abe, T., Sato, Y., & Bemben, M. (2011). The effects of different initial restrictive pressures used to reduce blood flow and thigh composition on tissue oxygenation of the quadriceps. Journal of Sports Sciences, 29(9), 951-958. https://doi.org/10.1080/02640414.2011.572992
Krizaj, D., Simunic, B., & Zagar, T. (2008). Short-term repeatability of parameters extracted from radial displacement of muscle belly. Journal of Electromyography and Kinesiology: Official Journal of the International Society of Electrophysiological Kinesiology, 18(4), 645-651. https://doi.org/10.1016/j.jelekin.2007.01.008
Li W. (2022). An experimental study of the effects of augmented training on the explosive and sensitive qualities of the lower limbs in young taekwondo athletes [Master, Xi'an Physical Education University]. Retrieved from [Accesed 12/06/2023]: https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CMFD&dbname=CMFD202202&filename=1022573270.nh&v=
Liu S., Chen S., Liu Z., & Guo S. (2020). Feasibility analysis of the integration of the BFRT method into competitive martial arts training. Journal of Wuyi College, 39(9), 66-70.
Loenneke, J. P., Young, K. C., Wilson, J. M., & Andersen, J. C. (2013). Rehabilitation of an osteochondral fracture using blood flow restricted exercise: A case review. Journal of Bodywork and Movement Therapies, 17(1), 42-45. https://doi.org/10.1016/j.jbmt.2012.04.006
Loturco, I., Gil, S., Laurino, C. F. de S., Roschel, H., Kobal, R., Cal Abad, C. C., & Nakamura, F. Y. (2015). Differences in muscle mechanical properties between elite power and endurance athletes: A comparative study. Journal of Strength and Conditioning Research, 29(6), 1723-1728. https://doi.org/10.1519/JSC.0000000000000803
Loturco, I., Pereira, L. A., Kobal, R., Kitamura, K., Ramírez-Campillo, R., Zanetti, V., Abad, C. C. C., & Nakamura, F. Y. (2016). Muscle Contraction Velocity: A Suitable Approach to Analyze the Functional Adaptations in Elite Soccer Players. Journal of Sports Science & Medicine, 15(3), 483-491.
Luebbers, P. E., Fry, A. C., Kriley, L. M., & Butler, M. S. (2014). The effects of a 7-week practical blood flow restriction program on well-trained collegiate athletes. Journal of Strength and Conditioning Research, 28(8), 2270-2280. https://doi.org/10.1519/JSC.0000000000000385
Ma Y. (2021). Effects of 6-week combined pressurised strength training and high intensity resistance training on lower limb muscle strength, proprioception and balance in taekwondo athletes [Master, Shanghai Physical Education University]. Retrieved from [Accesed 12/06/2023]: https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CMFD&dbname=CMFD202102&filename=1021654908.nh&v=
Paoli, A., Pacelli, F., Bargossi, A. M., Marcolin, G., Guzzinati, S., Neri, M., Bianco, A., & Palma, A. (2010). Effects of three distinct protocols of fitness training on body composition, strength and blood lactate. The Journal of Sports Medicine and Physical Fitness, 50(1), 43-51.
Peng Y., Jiao Q., & Hu X. (2017). TMG-based non-invasive muscle status diagnostic system-A study of the effect of acute vibration training on the mechanical contraction characteristics of upper limb muscles. Journal of Nanjing Institute of Physical Education (Natural Science Edition), 16(1), 52-57+62.
Pescatello, L. S., Thompson, W. R., & Gordon, N. F. (2009). A preview of acsm's guidelines for exercise testing and prescription, eighth edition. ACSM's Health & Fitness Journal, 13(4), 23. https://doi.org/10.1249/FIT.0b013e3181aae1a0
Rey, E., Lago-Peñas, C., Lago-Ballesteros, J., & Casáis, L. (2012). The effect of recovery strategies on contractile properties using tensiomyography and perceived muscle soreness in professional soccer players. Journal of Strength and Conditioning Research, 26(11), 3081-3088. https://doi.org/10.1519/JSC.0b013e3182470d33
Rodríguez-Ruiz, D., Rodríguez-Matoso, D., Quiroga, M. E., Sarmiento, S., García-Manso, J. M., & Da Silva-Grigoletto, M. E. (2012). Study of mechanical characteristics of the knee extensor and flexor musculature of volleyball players. European Journal of Sport Science, 12(5), 399-407. https://doi.org/10.1080/17461391.2011.568633
Rosety, M. A., Pery, M. T., Rodriguez-Pareja, M. A., Diaz, A., Rosety, J., Garcia, N., Brenes-Martin, F., Rosety-Rodríguez, M., Toro, R., Ordoñez, F. J., & Rosety, I. (2015). A short-term circuit resistance programme reduced epicardial fat in obese aged women. Nutricion Hospitalaria, 32(5), 2193-2197. https://doi.org/10.3305/nh.2015.32.5.9696
Sakuraba, K., & Ishikawa, T. (2009). Effect of isokinetic resistance training under a condition of restricted blood flow with pressure. Journal of Orthopaedic Science: Official Journal of the Japanese Orthopaedic Association, 14(5), 631-639. https://doi.org/10.1007/s00776-009-1374-3
Šimunic, B., Pišot, R., Rittweger, J., & Degens, H. (2018). Age-Related Slowing of Contractile Properties Differs Between Power, Endurance, and Nonathletes: A Tensiomyographic Assessment. The Journals of Gerontology. Series A, Biological Sciences and Medical Sciences, 73(12), 1602-1608. https://doi.org/10.1093/gerona/gly069
Spranger, M. D., Krishnan, A. C., Levy, P. D., O'Leary, D. S., & Smith, S. A. (2015). Blood flow restriction training and the exercise pressor reflex: A call for concern. American Journal of Physiology. Heart and Circulatory Physiology, 309(9), H1440-1452. https://doi.org/10.1152/ajpheart.00208.2015
Sumaryanti, & Yudhistira, D. (2021). Content Validity of Circuit Training Program and Its Effects on The Aerobic Endurance of Wheelchair Tennis Athletes.
Sumide, T., Sakuraba, K., Sawaki, K., Ohmura, H., & Tamura, Y. (2009). Effect of resistance exercise training combined with relatively low vascular occlusion. Journal of Science and Medicine in Sport, 12(1), 107-112. https://doi.org/10.1016/j.jsams.2007.09.009
Sun D., Che T., Li Z., & Yang T. (2023). Time-domain characteristics of muscle activity and post-activation enhancement effects induced by stress training in female football players of different training levels. Journal of Capital Institute of Physical Education, 35(2), 196-207.
Takarada, Y., Nakamura, Y., Aruga, S., Onda, T., Miyazaki, S., & Ishii, N. (2000). Rapid increase in plasma growth hormone after low-intensity resistance exercise with vascular occlusion. Journal of Applied Physiology (Bethesda, Md.: 1985), 88(1), 61-65. https://doi.org/10.1152/jappl.2000.88.1.61
Takarada, Y., Tsuruta, T., & Ishii, N. (2004). Cooperative effects of exercise and occlusive stimuli on muscular function in low-intensity resistance exercise with moderate vascular occlusion. The Japanese Journal of Physiology, 54(6), 585-592. https://doi.org/10.2170/jjphysiol.54.585
Valencic, V., & Knez, N. (1997). Measuring of skeletal muscles' dynamic properties. Artificial Organs, 21(3), 240-242. https://doi.org/10.1111/j.1525-1594.1997.tb04658.x
Wang J., Wang D., & Zhen Z. (2011). Effects of 12 weeks of circuit strength training on body fat, heart rate and muscle strength. 1. Retrieved from [Accesed 12/06/2023]: https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CPFD&dbname=CPFD0914&filename=BJTY201112001070&v=
Wang M., Li Z., Wei W., Zhao Z., Chen C., & Huang J. (2019). An empirical study on the effect of lower limb compression strength training in high-level male handball players. China Sports Science and Technology, 55(5), 30-36.
Watsford, M., Ditroilo, M., Fernández-Peña, E., D'Amen, G., & Lucertini, F. (2010). Muscle stiffness and rate of torque development during sprint cycling. Medicine and Science in Sports and Exercise, 42(7), 1324-1332. https://doi.org/10.1249/MSS.0b013e3181ce509d
Wei J., Li B., Yang W., Wang X., Feng L., & Li Y. (2019). Effectiveness and mechanism of action in the application of blood flow restriction training. Sports Sciences, 39(4), 71-80.
Wilson, M. T., Ryan, A. M. F., Vallance, S. R., Dias-Dougan, A., Dugdale, J. H., Hunter, A. M., Hamilton, D. L., & Macgregor, L. J. (2019). Tensiomyography Derived Parameters Reflect Skeletal Muscle Architectural Adaptations Following 6-Weeks of Lower Body Resistance Training. Frontiers in Physiology, 10, 1493. https://doi.org/10.3389/fphys.2019.01493
Yasuda, T., Fujita, T., Miyagi, Y., Kubota, Y., Sato, Y., Nakajima, T., Bemben, M., & Abe, T. (2006). Electromyographic responses of arm and chest muscle during bench press exercise with and without KAATSU. International Journal of Kaatsu Training Research, 2, 15-18. https://doi.org/10.3806/ijktr.2.15
Yoshida, T., & Delafontaine, P. (2020). Mechanisms of IGF-1-Mediated Regulation of Skeletal Muscle Hypertrophy and Atrophy. Cells, 9(9), 1970. https://doi.org/10.3390/cells9091970
Zubac, D., & Šimunič, B. (2017). Skeletal Muscle Contraction Time and Tone Decrease After 8 Weeks of Plyometric Training. Journal of Strength and Conditioning Research, 31(6), 1610-1619. https://doi.org/10.1519/JSC.0000000000001626