Enter your details:
Name:
E-mail:
 
Thank you for subscribing.
Subscribe to our newsletter!


Widiyanto1, Soetanto Hartono2

1Yogyakarta State University, Faculty of Sport Sciences, Yogyakarta, Indonesia
2Surabaya State University, Faculty of Sport Sciences, Surabaya, Indonesia

The Effects of Hyperbaric Oxygen and Active Recovery on Lactate Removal and Fatigue Index

Sport Mont 2018, 16(3), 15-18 | DOI: 10.26773/smj.181003

Abstract

The purpose of this study was to compare active recovery and recovery using hyperbaric oxygen on lactate removal and fatigue index. Fatigue index was measured through Running-based Anaerobic Sprint Test (RAST). Lactate clearance was measured using lactate analyzer. Recovery period is important since competitive events are sometimes very close one from the other.The design of this research was randomized pretest posttest control group design. Thirty students were randomly assigned to three groups consisted of 10 students, the first group doing recovery using 1.3 ATA hyperbaric oxygen after doing RAST, the second group doing recovery in 1.8 ATA hyperbaric oxygenafter doing RAST, and the third group doing active recovery with light intensity after doing RAST. Blood lactate concentration was measured before RAST, ten minutes after RAST, and after recovery either using hyperbaric oxygen or active recovery, and then they took RAST again to get the second fatigue index. Data was analyzed through Manova with .05 significant levels. Blood lactate level isthe lowest in those treated with Hyperbaric Oxygen 1.3 ATA has significant difference with active recovery (p=.008). Fatigue index of those treated with hyperbaric oxygen 1.3 ATA is the lowest (6.7 watts/second) vs HBO 1.8 ATA (7.85 watts/second) and active recovery (8.56 watts/second). Increasing oxygen supply to musculoskeletal system increases metabolism of waste substances and promotes recovery from fatigue. Hiperbaric Oxygen 1.3 ATA is more effective than HBO 1.8 ATA or active recovery in lactate removal.

Keywords

hyperbaric oxygen treatment, blood lactate, fatigue index, RAST



View full article
(PDF – 493KB)

References

Draper, N. & Whyte, G. (1997). Here’s a new running base test of anaerobic performance for which you need only a stop watch and a calculator. Peak Performance, 96, 3-5.

Dupont, G. & Moalla, W. (2004). Passive versus active recovery during high-intensity intermittent exercises. Medicine & Science in Sports & Exercise, 36(2), 302-307.

Falks, B., Einbinder, M., Weinstein, Y., Epstein, S., & Karni, Y.(1995). Blood lactate concentration following exercise: Effect of heat exposure and of active recovery in heat-acclimatized subjects. International Journal of Sport Medicine, 16(1), 7-12.

Ishii, Y., Deie, M., Adachi, Y., Yasunaga, Y., Sharman, P., Miyanaga, Y., & Ochi, M. (2005). Hyperbaric oxygen as an adjuvant for athletes. Sports Med, 35(9), 739-746.

Jain, K.K. (1996). Texbook of Hyperbaric Medicine” 2nd Revised Edition, Hogrefe and Hubber Publisher Inc. (432-445).

Kim, S., Yukishita, T., Lee, K., Yokota, S., Nakata, K., Suzuki, D., & Kobayashi, H. (2011). The effect of mild-pressure hyperbaric therapy (oasis O2) on fatigue and oxidative stress. Health Today, 3(7), 432-436.

Lattier, G. & Millet, G.Y. (2004). Fatigue and recovery after high-intensity exercise part II: recovery interventions. InternationalJournal of Sports Medicine, 25(7), 509-515.

Mathieu, D. (2006). Handbook on Hyperbaric Medicine: Physiologic Effects of Hyperbaric Oxygen on Hemodynamics and Microcirculation, ed. (75–101). Springer. Printed in the Netherlands.

Monedero, J. & Donne, B. (2000). Effect of recovery interventions on lactate removal and subsequent performance. International Journal of Sports Medicine, 21(8), 593-597.

Robertson, P.W. & Hart, B.B. (1999). Assessment of tissue oxygenation. Respir Care Clin N Am, 5(2), 221-63.

Shimoda, M., Enomoto, M., Horie, M., Miyakawa, S., & Yagishita, K. (2015). Effects of hyperbaric oxygen after maximal intermittent plantar flexion exercise. J of Strength Con Res, 29(6), 1648-56.

Staples, J. & Clement, D. (1996). Hyperbaric oxygen chambers and the treatment of sports injuries. Sports Med., 22(4), 219-227.

Untari. (2003). The effects of hyperbaric oxygen on blood lactate concentration and arterial pCO2 after submaximal workload.Master thesis. Graduate Program, Airlangga University (in Indonesian).