Does TSR Training Programs Increase the Speed and VO2max of MMA Athletes?

Penulis

  • Tutur Jatmiko Universitas Negeri Surabaya
  • Rachman Widhohardono Universitas Negeri Surabaya
  • Muhammad Rizky Sidik Universitas Negeri Surabaya
  • Dio alif Airlangga Daulay Universitas Negeri Surabaya
  • Tri Setyo Utami Universitas Negeri Surabaya
  • Riski Septa Jatmikanto Universitas Negeri Surabaya
  • Wijono Universitas Negeri Surabaya

Kata Kunci:

TSR, MMA, Speed, Vo2max

Abstrak

The purpose of this study is to examine the impact of an 8-week TUJA Shuttle Run (TSR) training program on enhancing speed and VO₂max in Mixed Martial Arts (MMA) athletes in Magetan Regency. This research employed a quasi-experimental approach using a one-group pretest-posttest design. The participants were eight actively competing MMA athletes selected through purposive sampling based on specific criteria, including consistent training attendance and absence of injury during the program. Data were collected using a 20-meter sprint test to assess speed and a multistage fitness test (commonly known as the beep test) to evaluate VO₂max levels. Both tests have been previously validated and are widely accepted as reliable tools for measuring biomotor performance and aerobic endurance. The collected data were analyzed using SPSS version 25 with a significance threshold set at α = 0.05. Findings indicated a statistically significant improvement (P < 0.05) in both speed and VO₂max following the intervention. Participants demonstrated faster sprint times and elevated VO₂max values, indicating favorable adaptations within the cardiovascular and respiratory systems due to the training regimen. These outcomes suggest that the TSR program is an effective strategy for improving key physical fitness components essential to MMA performance. Based on these results, incorporating the TSR training model into foundational conditioning programs and competitive preparation phases is strongly recommended, particularly for athletes targeting regional and national tournaments.

Referensi

Alm, P. (2013). Physiological Characters in Mixed Martial Arts. American Journal of Sports Science, 1(2), 12. https://doi.org/10.11648/j.ajss.20130102.11

Barbier, X. (2020). Physiological profile of French Mixed Martial Art athletes. In Journal of Exercise and Nutrition (Vol. 3, Issue 1, pp. 1–4). MDPI. https://doi.org/10.3390/sports7060146

Bizarelo, R., Da, R., & Lau, S. (2024). Changes in body composition and physical performance of professional mixed martial arts athletes between the preparatory and pre-competitive periods. Int. J. Kinanthrop, 4(2), 92–99. https://doi.org/10.34256/ijk241210

Davidenko, I., Bolotin, A., Pronin, E., Anisimov, M., Petrov, V., Vorozheikin, A., Tyupa, P., Melnichuk, A., Kovalchuk, A., & Tyrina, M. (2024). Assessing the efficacy of an experimental strength and conditioning program for professional mixed martial arts athletes. Journal of Physical Education and Sport, 24(1), 36–43. https://doi.org/10.7752/jpes.2024.01005

Gabrys, T. T., Stanula, A., & Szmatlan-Gabryś, U. (2018). A Comparison of Methods for Calculating Lactate Anaerobic Thresholds in Judo and Mixed Martial Arts Athletes. SOCIETY. INTEGRATION. EDUCATION. Proceedings of the International Scientific Conference, 4, 35–45. https://doi.org/10.17770/sie2018vol1.3183

I Lovell, D., Bousson, M., & McLellan, C. (2013). The Use of Performance Tests for the Physiological Monitoring of Training in Combat Sports: A Case Study of a World Ranked Mixed Martial Arts Fighter. Journal of Athletic Enhancement, 02(01). https://doi.org/10.4172/2324-9080.1000104

Jatmiko, T., Kusnanik, N. W., Nurhasan, N., Muhammad, H. N., & Noordia, A. (2024a). Enhancing Speed, Agility, and Anaerobic Capacity via a Tuja-Shuttle Run Exercise Model. Middle East Journal of Rehabilitation and Health Studies, 11(1). https://doi.org/10.5812/mejrh-134693

Jatmiko, T., Kusnanik, N. W., & Sidik, R. M. (2024a). High-Intensity Interval Training (HIIT) Progressive Sprint-Release Model: Its Effect in Increasing Speed, Aerobic Capacity, and Anaerobic Capacity of Athletes. In Retos (Vol. 57). https://recyt.fecyt.es/index.php/retos/index

Jatmiko, T., Kusnanik, N. W., Nurhasan, N., Muhammad, H. N., & Purwoto, S. P. (2024b). Increase of VO 2 max After 8 Weeks Tuja Shuttle Run Exercise for Athletes in the 14-17 Year Age Group Aumento del VO2 máximo después de 8 semanas de ejercicio Tuja Shuttle Run para atletas del grupo de edad de 14 a 17 años. In Retos (Vol. 55). https://recyt.fecyt.es/index.php/retos/index

Jatmiko, T., Sidik, R. M., Kusnanik, N. W., Utami, T. S., Labib, M., Rasyid, S. A., & Aji, W. R. (2025). Effects of HIIT Model Progressive Sprint-Release and TUJA Shuttle Run in increasing aerobic capacity, anaerobic capacity, and speed: a comparative study in female volleyball athletes. Retos, 65, 192–200. https://doi.org/10.47197/retos.v65.109

Kostikiadis, I. N., Methenitis, S., Tsoukos, A., Veligekas, P., Terzis, G., & Bogdanis, G. C. (2018). Effect of Short-Term Sport-Specific Strength and Conditioning Training on Physical Fitness of Well-Trained Mixed Martial Arts Athletes. Journal of Sports Science and Medicine, 17, 348–358. http://www.jssm.org

Manolachi, V., Chernozub, A., Tsos, A., Potop, V., Kozina, Z., Zoriy, Y., & Shtefiuk, I. (2023). Integral method for improving precompetition training of athletes in Mixed Martial Arts. Journal of Physical Education and Sport, 23(6), 1359–1366. https://doi.org/10.7752/jpes.2023.06166

Nery De Oliveira, S., & Follmer, B. (2015). Physiological Profiles of North Brazilian Mixed Martial Artists (MMA). Journal of Exercise Physiology. https://www.researchgate.net/publication/271700839

Peacock, C. A., Mena, M., Sanders, G. J., Silver, T. A., Kalman, D., & Antonio, J. (2019). Sleep data, physical performance, and injuries in preparation for professional mixed martial arts. Sports, 7(1). https://doi.org/10.3390/sports7010001

Simanjuntak, V., Rahayu, T., & Yudhistira, D. (2022). Analysis of Body Mass Index and Physical Condition of Martial Athletes in West Kalimantan Province: Study towards PON 2021. International Journal of Human Movement and Sports Sciences, 10(4), 768–774. https://doi.org/10.13189/saj.2022.100417

Susanto, D. A., Syarifoeddin, E. W., & Akhmad, N. (2023). Pengaruh Latihan Weighted Vest dan Resistence Band Terhadap Peningkatan Power Otot Tungkai Atlet IBA MMA UNDIKMA Camp. Journal Transformation of Mandalika, 4(2), 160–165. http://ojs.cahayamandalika.com/index.php/jtm/issue/archive

Tota, L., Drwal, T., Maciejczyk, M., Szyguła, Z., Pilch, W., Pałka, T., & Lech, G. (2014). Effects of Original Physical Training Program on Changes in Body Composition, Upper Limb Peak Power and Aerobic Performance of a Mixed Martial Arts Fighter. Medicina Sportiva, 18(2), 78–83. https://doi.org/10.5604/17342260.1110317

Tota, L., Pilch, W., Piotrowska, A., & MacIejczyk, M. (2019). The Effects of Conditioning Training on Body Build, Aerobic and Anaerobic Performance in Elite Mixed Martial Arts Athletes. Journal of Human Kinetics, 70(1), 223–231. https://doi.org/10.2478/hukin-2019-0033

Yearby, T., Myszka, S., Grahn, A., Sievewright, S., Singer, A., & Davids, K. (2024). Applying an ecological dynamics framework to mixed martial arts training. Sports Coaching Review. https://doi.org/10.1080/21640629.2024.2325822

Diterbitkan

2024-12-30

Cara Mengutip

Jatmiko, T., Widhohardono, R., Rizky Sidik, M., Airlangga Daulay, D. alif, Setyo Utami, T., Septa Jatmikanto, R., & Wijono. (2024). Does TSR Training Programs Increase the Speed and VO2max of MMA Athletes?. Proceedings International Conference on Aligning Sustainability With Vocational Innovations (ICASVI), 1(1), 22–29. Diambil dari https://proceeding.unesa.ac.id/index.php/icasvi/article/view/7648