HUBUNGAN DAYA TAHAN OTOT TUNGKAI BAWAH TERHADAP FREKUENSI TENDANGAN DOLLYO CHAGI PADA PEMAIN TAEKWONDO KECABANGAN KYORUGI

Authors

  • Nandi Saputra Program Studi S1 Fisioterapi, Fakultas Fisioterapi, Universitas Esa Unggul Author
  • Syahmirza Indra Lesmana Program Studi S1 Fisioterapi, Fakultas Fisioterapi, Universitas Esa Unggul Author
  • Mohamad Reza Hilmy Program Studi S1 Fisioterapi, Fakultas Fisioterapi, Universitas Esa Unggul Author
  • Eko Wibowo Program Studi S1 Fisioterapi, Fakultas Fisioterapi, Universitas Esa Unggul Author
  • Jerry Maratis Program Studi S1 Fisioterapi, Fakultas Fisioterapi, Universitas Esa Unggul Author

DOI:

https://doi.org/10.64094/3pq7zw66

Keywords:

daya tahan otot, dollyo chagi, taekwondo, frekuensi tendangan, tungkai bawah

Abstract

Tendangan dollyo chagi merupakan teknik penting dalam Taekwondo kecabangan kyorugi. Tendangan ini harus mampu frekuentif yaitu cepat dan berulang. Adapun, salah satu komponen pendukung dollyo chagi adalah daya tahan otot terutama tungkai bawah yang mana berpotensi membantu atlet mempertahankan performa dan frekuensi tendangan. Penelitian ini bertujuan untuk mengetahui hubungan daya tahan otot tungkai bawah dengan frekuensi tendangan dollyo chagi pada atlet Taekwondo kyorugi. Penelitian ini merupakan observasional analitik dengan desain cross-sectional. Sampel berjumlah 35 atlet yang dipilih menggunakan teknik total sampling. Daya tahan otot tungkai bawah diukur menggunakan Squat Test (jumlah repetisi maksimal), sedangkan frekuensi tendangan dollyo chagi diukur menggunakan Frequency of Speed Kick Test (FSKT) 10 detik (jumlah tendangan valid maksimal). Analisis data dilakukan menggunakan uji normalitas Shapiro–Wilk dan uji korelasi Pearson dengan tingkat signifikansi 0,05. Hasil menunjukkan terdapat hubungan positif yang signifikan antara daya tahan otot tungkai bawah dan frekuensi tendangan dollyo chagi (r = 0,756; p < 0,001). Kesimpulannya, semakin baik daya tahan otot tungkai bawah maka semakin tinggi frekuensi tendangan dollyo chagi pada atlet Taekwondo kyorugi.

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References

Bompa, T. O., & Buzzichelli, C. A. (2019). Peridization: Theory and Methodology of Training Sixth Edition. In Human Kinetics: Vol. 6 ed (6th ed.). Human Kinetics. https://doi.org/10.5040/9781718225435

Cooke, Haischer, MH, & Carzoli. (2019). Body Mass and Femur Length Are Inversely Related to Repetitions Performed in the Back Squat in Well-Trained Lifters. Body Mass and Femur Length Are Inversely Related to Repetitions Performed in the Back Squat in Well-Trained Lifters, 33(3).

Corcoran, D., Climstein, M., Whitting, J., & Del Vecchio, L. (2024). Impact Force and Velocities for Kicking Strikes in Combat Sports: A Literature Review. Sports, 12(3), 1–17. https://doi.org/10.3390/sports12030074

De Andrade Junior, A. B., De Andrade, E. M. P. R., Vigário, P. D. S., Luchesa, C. A., De Azevedo Vieira, J. E., De Jesus, I. R. T., & Lopes, A. J. (2025). Relationships Between Performance in the Frequency Speed Kick Test, Heart Rate Variability, and Body Composition in Amateur Muay Thai Fighters. International Journal of Exercise Science, 18(6), 428–442. https://doi.org/10.70252/PPGL4101

Diker, G., Struzik, A., Ön, S., & Zileli, R. (2022). The Relationship between the Hamstring-to-Quadriceps Ratio and Jumping and Sprinting Abilities of Young Male Soccer Players. International Journal of Environmental Research and Public Health, 19(12). https://doi.org/10.3390/ijerph19127471

Estevan, I., & Falco, C. (2013). Mechanical analysis of the roundhouse kick according to height and distance in taekwondo. Biology of Sport, 30(4), 275–279. https://doi.org/10.5604/20831862.1077553

Estevan, I., Falco, C., Álvarez, O., & Molina-García, J. (2012). Effect of olympic weight category on performance in the roundhouse kick to the head in taekwondo. Journal of Human Kinetics, 31(1), 37–43. https://doi.org/10.2478/v10078-012-0004-x

Górski, M., & Orysiak, J. (2019). Differences between anthropometric indicators and the impact force of taekwondo kicks performed with the dominant and non-dominant limb. Biomedical Human Kinetics, 11(1), 193–197. https://doi.org/10.2478/bhk-2019-0027

Indra Lesmana, S., Maryam, S., Kuswari, M., & Munawarah, M. (2020). The Connection between Athlete Characteristics and Frequency Improvement of Dollyo Kick in Exercise after Ankle Sprain Chronic Recovery. Icri 2018, 2751–2756. https://doi.org/10.5220/0009952227512756

Joyner, M. J., & Coyle, E. F. (2008). Endurance exercise performance: The physiology of champions. Journal of Physiology, 586(1), 35–44. https://doi.org/10.1113/jphysiol.2007.143834

Kwon, I., Kim, K. S., & Lee, Y. (2024). Relationships between endurance exercise training-induced muscle fiber-type shifting and autophagy in slow- and fast-twitch skeletal muscles of mice. Physical Activity and Nutrition, 28(2), 23–34. https://doi.org/https://pubmed.ncbi.nlm.nih.gov/39097995/

Mølmen, K. S., Almquist, N. W., & Skattebo, Ø. (2024). Effects of Exercise Training on Mitochondrial and Capillary Growth in Human Skeletal Muscle: A Systematic Review and Meta-Regression. Sports Medicine (Auckland, N.Z.), 55(1), 115–144. https://doi.org/10.1007/s40279-024-02120-2

Ojeda, Á. H., Maliqueo, S. G., & Barahona-Fuentes, G. (2020). Validity and reliability of the Muscular Fitness Test to evaluate body strength-resistance. Apunts Sports Medicine, 55(208), 128–136. https://doi.org/10.1016/j.apunsm.2020.08.002

Park, M., Byun, Y., & Kim, S. (2025). Comparative analysis of isokinetic muscle function, anaerobic power, and physical fitness in male Taekwondo players based on body mass index standards. Journal of Men’s Health, 21(6), 62–69. https://doi.org/10.22514/jomh.2025.081

Quraisy, A. (2022). Normalitas Data Menggunakan Uji Kolmogorov-Smirnov dan Saphiro-Wilk. J-HEST Journal of Health Education Economics Science and Technology, 3(1), 7–11. https://doi.org/10.36339/jhest.v3i1.42

Ravindra, P. V., Janhavi, P., Divyashree, S., & Muthukumar, S. P. (2022). Nutritional interventions for improving the endurance performance in athletes. Archives of Physiology and Biochemistry, 128(4), 851–858. https://doi.org/10.1080/13813455.2020.1733025

Sant’Ana, J., Franchini, E., da Silva, V., & Diefenthaeler, F. (2017). Effect of fatigue on reaction time, response time, performance time, and kick impact in taekwondo roundhouse kick. Sports Biomechanics, 16(2), 201–209. https://doi.org/10.1080/14763141.2016.1217347

Santos, J. F. da S., Herrera-Valenzuela, T., & Franchini, E. (2019). Establishing frequency speed of kick test classificatory tables in male and female taekwondo athletes. Kinesiology, 51(2), 213–218. https://doi.org/10.26582/k.51.2.12

Santos, J. F. da S., Loturco, I., & Franchini, E. (2018). Relationship between frequency speed of kick test performance, optimal load, and anthropometric variables in black-belt taekwondo athletes. Ido Movement for Culture, 18(1), 39–44. https://doi.org/10.14589/ido.18.1.6

Vigotsky, AD, Bryanton, MA, Nuckols, G, & Beardsley. (2019). Biomechanical, Anthropometric, and Psychological Determinants of Barbell Back Squat Strength. Journal of Strength and Conditioning Research, 33. https://doi.org/10.1519/JSC.0000000000002535

Zhang, Q., Morel, B., Trama, R., & Hautier, C. A. (2021). Influence of Fatigue on the Rapid Hamstring/Quadriceps Force Capacity in Soccer Players. Frontiers in Physiology, 12(February), 1–14. https://doi.org/10.3389/fphys.2021.627674

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Published

24-02-2026

How to Cite

HUBUNGAN DAYA TAHAN OTOT TUNGKAI BAWAH TERHADAP FREKUENSI TENDANGAN DOLLYO CHAGI PADA PEMAIN TAEKWONDO KECABANGAN KYORUGI. (2026). Indonesian Journal of Health Research Innovation, 3(1), 95-102. https://doi.org/10.64094/3pq7zw66