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Authors

Pramod Kumar Yadav

Santosh Kumar Gupta

Abstract

This study investigated the effect of a special explosive strength training plan on the performance and physical capacities of long jump and triple jump athletes. Forty participants underwent pre- and post-training assessments measuring jump distances alongside leg, hand, and abdominal explosive strength. Descriptive statistics revealed marked improvements across all variables following the intervention. Paired t-test analyses confirmed these gains were statistically significant (p < .001) for both jump performance and explosive strength measures. Repeated measures ANOVA further demonstrated significant differences among the types of explosive strength components pre- and post-training (p < .00001), highlighting their distinct contributions to jump performance. The findings emphasize that leg, hand, and abdominal explosiveness each uniquely influence jump outcomes and respond differently to training stimuli. This study underscores the effectiveness of a multifaceted explosive strength regimen in enhancing athletic performance in horizontal jump events. Recommendations include individualized training protocols targeting specific strength deficits and integrating technique work to optimize results. These insights provide valuable guidance for coaches and practitioners aiming to maximize jump performance through evidence-based strength development strategies.

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References

  1. Abood, N. A., Ali, A. H., & Mahmoud, M. E. (2022). The Relationship of Some Biomechanical Variables in the Explosive Force of the Two Legs and the Achievement of the Effectiveness of the Long Jump. مجلة الرافدين للعلوم الرياضية, 25(76), 217–237. https://doi.org/10.33899/rjss.2022.173636
  2. Audina, A., Sary, D. M., Purba, A., & Halawa, B. P. S. (2024). Long Jump Ability: Analyze of Leg Explosive Power and Running Speed for Junior High School Students. Inspiree, 5(02), 47–53. https://doi.org/10.53905/inspiree.v5i02.129
  3. Ayed, K. B., Saad, H. B., Hammami, M. A., & Latiri, I. (2020). Relationships of the 5-Jump Test (5JT) Performance of Youth Players With Volleyball Specific’ Laboratory Tests for Explosive Power. American Journal of Men’s Health, 14(6), 1557988320977686. https://doi.org/10.1177/1557988320977686
  4. Coratella, G., Beato, M., Milanese, C., Longo, S., Limonta, E., Rampichini, S., Cè, E., Bisconti, A. V., Schena, F., & Esposito, F. (2018). Specific Adaptations in Performance and Muscle Architecture After Weighted Jump-Squat vs. Body Mass Squat Jump Training in Recreational Soccer Players. Journal of Strength and Conditioning Research, 32(4), 921–929. https://doi.org/10.1519/JSC.0000000000002463
  5. El-Ashker, S., Hassan, A., Taiar, R., & Tilp, M. (2019). Long jump training emphasizing plyometric exercises is more effective than traditional long jump training: A randomized controlled trial. Journal of Human Sport and Exercise, 14(1), 215–224. https://doi.org/10.14198/JHSE.2019.141.18
  6. Fouad, A. (2023). Effect of discrete and continuous instantaneous strength training, to develop the mechanical ability, the technical performance according to some biomechanical variables and the achievement of the Athletics for advanced in long jump. https://doi.org/10.33438/ijdshs.1368498
  7. Lloyd, R. S., Radnor, J. M., De Ste Croix, M., Cronin, J. B., & Oliver, J. L. (2016). Changes in Sprint and Jump Performances After Traditional, Plyometric, and Combined Resistance Training in Male Youth Pre- and Post-Peak Height Velocity. Journal of Strength and Conditioning Research, 30(5), 1239–1247. https://doi.org/10.1519/JSC.0000000000001216
  8. Niknam, A., Koushkie Jahromi, M., Hemmatinafar, M., Dehghani, A., & Oviedo, G. R. (2024). Plyometric training with additional load improves jumping performance and isokinetic strength parameters of knee extensors and flexors in young male soccer players. Journal of Sports Sciences, 1–19. https://doi.org/10.1080/02640414.2024.2421663
  9. Suchomel, T. J., Nimphius, S., & Stone, M. H. (2016). The Importance of Muscular Strength in Athletic Performance. Sports Medicine, 46(10), 1419–1449. https://doi.org/10.1007/S40279-016-0486-0
  10. Vanderka, M., Longová, K., Olasz, D., Krčmár, M., & Walker, S. (2016). Improved Maximum Strength, Vertical Jump and Sprint Performance after 8 Weeks of Jump Squat Training with Individualized Loads. Journal of Sports Science and Medicine, 15(3), 492–500. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974862
  11. Weiss, L., Fry, A., & Relyea, G. (n.d.). Explosive Strength Deficit As a Predictor of Vertical Jumping Performance. https://doi.org/10.1519/00124278-200202000-00012
  12. Wisløff, U., Castagna, C., Helgerud, J., Jones, R. L., & Hoff, J. (2004). Strong correlation of maximal squat strength with sprint performance and vertical jump height in elite soccer players. British Journal of Sports Medicine, 38(3), 285–288. https://doi.org/10.1136/BJSM.2002.002071