Issue |
Mov Sport Sci/Sci Mot
Number 126, 2024
|
|
---|---|---|
Page(s) | 11 - 16 | |
DOI | https://doi.org/10.1051/sm/2024014 | |
Published online | 23 July 2024 |
Article
Comparison of kinetic parameters among combat sports during countermovement jump: an observational study
MYAS–GNDU Department of Sports Sciences & Medicine Guru Nanak Dev University, Amritsar, India
* Corresponding author: amrindersinghpt@gmail.com
Received:
30
June
2023
Accepted:
11
June
2024
Background: Countermovement jump (CMJ) is significant measure of physical fitness when assessing athlete performance. It closely mimics the movements utilized in gameplay & is frequently used in field evaluation for strength and power training. Aim: To investigate the differences in the force impulse, velocity and time parameters during CMJ in combat sports (Judo & Taekwondo). Method: 12 athletes were divided into two groups Group A: judo (age: 21.5 ± 2.94 years; body height: 174.71 ± 8.55 cm; weight: 70.78 ± 4.45 kg; body mass index (BMI): 23.1 ± 1.55 kg/m2) and Group B: Taekwondo athletes (age: 19.5 ± 1.04 years; body height: 169.91 ± 4.45; weight: 63.25 ± 4.45 kg; BMI: 21.93 ± 1.41 kg/m2). After the specific warm up session, 3 repetitions of CMJ were recorded for each athlete. Kinetic data acquisition was performed using forceplate (Quattro Jump Type 9290DD portable Performance Analysis System − Kistler). Results: Raw data was evaluated by the SPSS V.26. The statistical independent t-test showed significant difference in kinetic variations of force impulse, velocity and time parameters during CMJ among both the combat sports groups. Results showed the significant (p < 0.05), yet diverse changes in various kinetics parameters while comparing both the groups and group A showed higher force impulse as compared to group B. Conclusion: This study showed there is a considerable difference in force impulse parameters among Judo group but in velocity & time a parameter there were no significant change on comparison of both the groups.
Key words: force / kistler forceplate / jump
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