Pengaruh Status Hidrasi dan Desaturasi yang Diinduksi Latihan Terhadap Performa Fisik Atlet Klub Bulu Tangkis

Authors

  • Ach Farhan Nur Hidayat Universitas Pendidikan Indonesia
  • Jajat Darajat Kusumah Negara Universitas Pendidikan Indonesia
  • Agus Gumilar Universitas Pendidikan Indonesia

DOI:

https://doi.org/10.31539/2skef858

Keywords:

Bulu Tangkis, Penurunan Saturasi Oksigen, Performa Atletik, Status Hidrasi, VO2max

Abstract

This study aimed to analyze the influence of hydration status (HS) and the exercise-induced muscle oxygen desaturation ratio (SmO2 Ratio) on physical performance, represented by VO2Max, in adolescent badminton club athletes. Method: A quantitative correlational approach with multiple linear regression and path analysis was used. Ten adolescent athletes (aged 12–15 years) from PB. Mutiara Cardinal Bandung participated as research subjects, selected through purposive sampling. Hydration status was measured post-exercise using a Tanita Body Composition Analyzer (Bioelectrical Impedance Analysis/BIA), while muscle oxygen desaturation was monitored in real time using a Moxy Monitor (Near-Infrared Spectroscopy/NIRS) during a standardized Beep Test. Data were analyzed using correlation, regression, and path analysis. Results: Hydration status showed no significant relationship with either the SmO2 Ratio (r = -0.302, p = 0.396) or VO2Max (r = -0.240, p = 0.505). In contrast, the SmO2 Ratio showed a very strong and significant correlation with VO2Max (r = 0.859, p = 0.001), explaining 73.8% of its variance. Path analysis showed that hydration status influenced VO2Max mainly through the SmO2 Ratio. Muscle oxygen utilization efficiency, as measured by the SmO2 Ratio, is the dominant physiological determinant of aerobic performance in adolescent badminton athletes, surpassing the contribution of hydration status when athletes maintain normal hydration levels. These findings support the integration of NIRS-based monitoring into badminton training practice.

Keywords: Badminton, Muscle Oxygen Desaturation, Athletic Performance, Hydration Status, VO2max

References

Abián-Vicén, J., Del Coso, J., González-Millán, C., Salinero, J. J., & Abián, P. (2012). Analysis of dehydration and strength in elite badminton players. PLoS ONE, 7(5), e37821. https://doi.org/10.1371/journal.pone.0037821

Apriantono, T., Hidayat, I. I., & Syafriani, R. (2018). Karakteristik fisiologi atlet bulutangkis ganda campuran (physical test). Jurnal Sosioteknologi, 17(3), 384–390. https://doi.org/10.5614/sostek.itbj.2018.17.3.6

Bassett, D. R., Jr., & Howley, E. T. (2000). Limiting factors for maximum oxygen uptake and determinants of endurance performance. Medicine & Science in Sports & Exercise, 32(1), 70–84. https://doi.org/10.1097/00005768-200001000-00012

Boone, J., Koppo, K., Barstow, T. J., & Bouckaert, J. (2009). Pattern of deoxy[Hb+Mb] during ramp cycle exercise: Influence of aerobic fitness status. European Journal of Applied Physiology, 105(6), 851–859. https://doi.org/10.1007/s00421-008-0969-2

Cheuvront, S. N., & Kenefick, R. W. (2014). Dehydration: Physiology, assessment, and performance effects. Comprehensive Physiology, 4(1), 257–285. https://doi.org/10.1002/cphy.c130017

Crum, E. M., O'Connor, W. J., Van Loo, L., Valckx, M., & Stannard, S. R. (2017). Validity and reliability of the Moxy oxygen monitor during incremental cycling exercise. European Journal of Sport Science, 17(8), 1037–1043. https://doi.org/10.1080/17461391.2017.1330899

Eserhaut, D. A., DeLeo, J. M., Provost, J. A., Ackerman, K. E., & Fry, A. C. (2025). Monitoring skeletal muscle oxygen saturation kinetics during graded exercise testing in NCAA Division I female rowers. Frontiers in Physiology, 16, Article 1538465. https://doi.org/10.3389/fphys.2025.1538465

Green, R., West, A. T., & Willems, M. E. T. (2023). Notational analysis and physiological and metabolic responses of male junior badminton match play. Sports, 11(2), Article 35. https://doi.org/10.3390/sports11020035

Joummy, A. J., Suppiah, P. K., & Samsir, M. S. (2020). Strength and endurance in badminton athletes. Asian Journal of Sports Medicine, 11(2), 45–52.

Judelson, D. A., Maresh, C. M., Farrell, M. J., Yamamoto, L. M., Armstrong, L. E., Kraemer, W. J., Volek, J. S., Spiering, B. A., Casa, D. J., & Anderson, J. M. (2007). Effect of hydration state on strength, power, and resistance exercise performance. Medicine & Science in Sports & Exercise, 39(10), 1817–1824. https://doi.org/10.1249/mss.0b013e3180de5f22

Kline, R. B. (2016). Principles and practice of structural equation modeling (4th ed.). Guilford Press.

Léger, L. A., & Lambert, J. (1982). A maximal multistage 20-m shuttle run test to predict VO₂max. European Journal of Applied Physiology and Occupational Physiology, 49(1), 1–12. https://doi.org/10.1007/BF00428958

Montain, S. J., & Coyle, E. F. (1992). Influence of graded dehydration on hyperthermia and cardiovascular drift during exercise. Journal of Applied Physiology, 73(4), 1340–1350. https://doi.org/10.1152/jappl.1992.73.4.1340

Murray, B. (2007). Hydration and physical performance. Journal of the American College of Nutrition, 26(Suppl. 5), 542S–548S. https://doi.org/10.1080/07315724.2007.10719656

Negara, J. D. K. (2023). Cycling athlete performance: Analysis of muscle oxygen saturation through Moxy measurement. Jurnal Pendidikan Jasmani dan Olahraga, 8(1), 9–15. https://doi.org/10.17509/jpjo.v8i1.56177

Orrù, S., Imperlini, E., Nigro, E., Alfieri, A., Cevenini, A., Polito, R., Daniele, A., Buono, P., & Mancini, A. (2018). Role of functional beverages on sport performance and recovery. Nutrients, 10(10), Article 1470. https://doi.org/10.3390/nu10101470

Osmani, F., Lago-Fuentes, C., Alemany-Iturriaga, J., & Barcala-Furelos, M. (2023). The relationship of muscle oxygen saturation analyzer with other monitoring and quantification tools in a maximal incremental treadmill test. Frontiers in Physiology, 14, Article 1155037. https://doi.org/10.3389/fphys.2023.1155037

Perrey, S., & Ferrari, M. (2018). Muscle oximetry in sports science: A systematic review. Sports Medicine, 48(3), 597–616. https://doi.org/10.1007/s40279-017-0820-1

Persatuan Bulu Tangkis Seluruh Indonesia. (2023). Sejarah dan organisasi PBSI. https://pbsi.id/organisasi/

Potter, A. W., Ward, L. C., Chapman, C. L., Tharion, W. J., Looney, D. P., & Friedl, K. E. (2025). Real-world assessment of multi-frequency bioelectrical impedance analysis (MFBIA) for measuring body composition in healthy physically active populations. European Journal of Clinical Nutrition, 79, Article 514. https://doi.org/10.1038/s41430-025-01664-4

Rachman, F. (2023). Profil anaerobik dan aerobik capacity pada atlet bulu tangkis.

Razali, N. M., & Wah, Y. B. (2011). Power comparisons of Shapiro-Wilk, Kolmogorov-Smirnov, Lilliefors and Anderson-Darling tests. Journal of Statistical Modeling and Analytics, 2(1), 21–33.

Reza, R. I., & Cerika, R. (2016). Hubungan antara status hidrasi serta konsumsi cairan pada atlet bola basket.

Subarjah, H., & Hidayat, Y. (2007). Permainan bulutangkis. FPOK Universitas Pendidikan Indonesia.

Tabachnick, B. G., & Fidell, L. S. (2013). Using multivariate statistics (6th ed.). Pearson.

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Published

2026-06-30