EXPLOSIVE POWER OF THE LOWER LIMBS IN FENCING AND TRACK AND FIELD ATHLETES
DOI:
https://doi.org/10.24193/subbeag.70.sp.iss.1.25Keywords:
fencing, track and field, power, strength, lower limbsAbstract
Introduction: Explosive power in the lower limbs is fundamental in fencing, influencing not only the performance, but also the overall dynamics of movements. Similarly, track and field events heavily rely on the strength and explosive capabilities of the lower limbs. Objective: The aim of the study was to compare the explosive power of the lower limbs between fencing and track and field athletes. Material and Methods: The study was conducted on 70 athletes (35 fencers and 35 track and field athletes) from Iasi, Romania, both males (37.1%) and females (62.9%), aged 13-14 years and 19-20 years. The instruments used to measure the explosive power in athletes were the Standing Long Jump (SLJ) Test and the Vertical Jump Test (Sargent Jump). Results: The analysis of the Standing Long Jump (SLJ) Test and the Vertical Jump Test (Sargent Jump) showed no statistically significant differences in the lower limb explosive power between the fencing and the track and field athletes for the first age group, but showed statistically significant differences in the second age group. Discussion: The Standing Long Jump (SLJ) Test and the Vertical Jump Test (Sargent Jump) act as benchmarks for younger athletes, allowing coaches to tailor training programs that cater to their specific need, thus enhancing their chances of success in both fencing and track and field. Conclusions: The Standing Long Jump Test and the Vertical Jump Test serve as a vital tool in the sports disciplines of athletics and track and field, providing essential metrics regarding explosive lower limb power.
References
Chen, J. (2023). Effects of stretching on lower limb strength in basketball athletes. Revista Brasileira De Medicina Do Esporte, 29. https://doi.org/10.1590/1517-8692202329012022_0669
Chen, T., Wong, D., Wang, Y., Ren, S., Yan, F., & Zhang, M. (2017). Biomechanics of fencing sport: A scoping review. PLOS ONE, 12(2), e0171578. https://doi.org/10.1371/journal.pone.0171578
Exell, T., Irwin, G., Gittoes, M., & Kerwin, D. (2016). Strength and performance asymmetry during maximal velocity sprint running. Scandinavian Journal of Medicine and Science in Sports, 27(11), 1273–1282. https://doi.org/10.1111/sms.12759
Hagiwara, M., Yamagishi, T., Okamoto, S., Azuma, Y., & Yamashita, D. (2023). Short‐term repeated sprint training in hypoxia improves explosive power production capacity and repeated sprint ability in Japanese international‐level male fencers: A case study. Physiological Reports, 11(6). https://doi.org/10.14814/phy2.15637
Handelsman, D. J., Hirschberg, A. L., & Bermon, S. (2018). Circulating testosterone as the hormonal basis of sex differences in athletic performance. Endocrine Reviews, 39(5), 803–829. https://doi.org/10.1210/er.2018-00020
Hermawan, I., Fachrezzy, F., Ginanjar, S., Widyawan, D., Husaini, F., & Maslikah, U. (2023). Comparison of vertical jump test measuring instruments with Choronojump on the explosive power of leg muscles of Indonesian badminton elite athletes. Kinestetik: Jurnal Ilmiah Pendidikan Jasmani, 7(3), 748–755. https://doi.org/10.33369/jk.v7i3.30240
Jastrzębski, Z., Wnorowski, K., Mikolajewski, R., Jaskulska, E., & Radzimiński, Ł. (2014). The effect of a 6-week plyometric training on explosive power in volleyball players. Baltic Journal of Health and Physical Activity, 6(2). https://doi.org/10.2478/bjha-2014-0008
LI, Y., Guo, Q., Shao, J., Gan, Y., Zhao, Y., & Zhou, Y. (2025). Neuromuscular factors predicting lower limb explosive strength in male college sprinters. Frontiers in Physiology, 15. https://doi.org/10.3389/fphys.2024.1498811
Ling, X. (2013). Research on the influence of complex training on the explosive force of adolescent athletes. Proceedings of the 2nd International Conference on Science and Social Research. https://doi.org/10.2991/icssr-13.2013.59
Litao, G., Yang, J., & Xutao, L. (2023). Influence of lower limb resistance training on the explosive quality of athletes. Revista Brasileira De Medicina Do Esporte, 29. https://doi.org/10.1590/1517-8692202329012023_0015
Loturco, I., Gil, S., Laurino, C., Roschel, H., Kobal, R., Abad, C., & Nakamura, F. (2015). Differences in muscle mechanical properties between elite power and endurance athletes. The Journal of Strength and Conditioning Research, 29(6), 1723–1728. https://doi.org/10.1519/jsc.0000000000000803
Mackenzie, B. (2005). 101 performance evaluation tests. Electric Word plc.
Mateo‐Orcajada, A., Abenza‐Cano, L., Cano-Martínez, A., & Vaquero‐Cristóbal, R. (2022). The importance of healthy habits to compensate for differences between adolescent males and females in anthropometric, psychological and physical fitness variables. Children, 9(12), 1926. https://doi.org/10.3390/children9121926
O’Driscoll, M., Mooney, T., & Sweeney, L. (2024). The relationship between maximum lower limb strength & power, and GPS acceleration speed in elite U20 Gaelic football athletes. International Journal of Strength and Conditioning, 4(1). https://doi.org/10.47206/ijsc.v4i1.282
Pandoyo, P., Indraswari, D., Marijo, M., & Bakhtiar, Y. (2020). The effect of plyometrics training on explosive power of medical students in Diponegoro University. Jurnal Kedokteran Diponegoro (Diponegoro Medical Journal), 9(3), 213–219. https://doi.org/10.14710/dmj.v9i3.27495
Pinto, V., Gantois, P., Dantas, M., Araújo, J., Cabral, S., & Cabral, B. (2017). Relationship between bone age, hormonal markers and physical capacity in adolescents. Journal of Human Growth and Development, 27(1), 77. https://doi.org/10.7322/jhgd.127658
Ravi, P. (2024). Improving athletic abilites: The role of circuit training in student populations. Untitled. International Journal of Yogic, Human Movement and Sports Sciences, 9(1). https://doi.org/10.22271/yogic.2024.v9.i1.b
Shuai, C., Wang, X., Li, Z., Xinqi, J., & Li, G. (2025). Effects of plyometric training on lower-limb explosive power and its retention after detraining in sprinters. American Journal of Men's Health, 19(4). https://doi.org/10.1177/15579883251363089
Thomas, E., Petrigna, L., Tabacchi, G., Teixeira, E., Pajaujienė, S., Sturm, D. J., Sahim, F. N., Gómez-López, M., Pausic, J., Paoli, A., Alesi, M., & Bianco, A. (2020). Percentile values of the standing broad jump in children and adolescents aged 6–18 years old. European Journal of Translational Myology. https://doi.org/10.4081/ejtm.0.9050
Turner, A., James, N., Dimitriou, L., Greenhalgh, A., Moody, J., Fulcher, D., Milas, E., & Kilduff, L. (2014). Determinants of Olympic fencing performance and implications for strength and conditioning training. The Journal of Strength and Conditioning Research, 28(10), 3001–3011. https://doi.org/10.1519/jsc.0000000000000478
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