Reported Hydration Beliefs and Behaviors without Effect on Plasma Sodium in Endurance Athletes

. 2017 ; 8 () : 259. [epub] 20170502

Status PubMed-not-MEDLINE Jazyk angličtina Země Švýcarsko Médium electronic-ecollection

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid28512433

Purpose: Little information is available on the association of hydration beliefs and behaviors in endurance athletes and exercise-associated hyponatremia (EAH). The aim of the present study was to determine hydration beliefs and behaviors in endurance athletes. Method: A 100 and 38 recreational athletes [107 mountain bikers (MTBers) and 31 runners] competing in seven different endurance and ultra-endurance races completed pre- and post-race questionnaires, and a subgroup of 113 (82%) participants (82 MTBers and 31 runners) also provided their blood samples. Result: More than half of the participants had some pre-race (59%), mid-race (58%), and post-race (55%) drinking plan. However, the participants simultaneously reported that temperature (66%), thirst (52%), and plan (37%) affected their drinking behavior during the race. More experienced (years of active sport: p = 0.002; number of completed races: p < 0.026) and trained (p = 0.024) athletes with better race performance (p = 0.026) showed a more profound knowledge of EAH, nevertheless, this did not influence their planned hydration, reported fluid intake, or post-race plasma sodium. Thirteen (12%) hyponatremic participants did not differ in their hydration beliefs, race behaviors, or reported fluid intake from those without post-race EAH. Compared to MTBers, runners more often reported knowledge of the volumes of drinks offered at fluid stations (p < 0.001) and information on how much to drink pre-race (p < 0.001), yet this was not associated with having a drinking plan (p > 0.05). MTBers with hydration information planned more than other MTBers (p = 0.004). In comparison with runners, more MTBers reported riding with their own fluids (p < 0.001) and planning to drink at fluid stations (p = 0.003). On the whole, hydration information was positively associated with hydration planning (n = 138) (p = 0.003); nevertheless, the actual reported fluid intake did not differ between the group with and without hydration information, or with and without a pre-race drinking plan (p > 0.05). Conclusion: In summary, hydration beliefs and behaviors in the endurance athletes do not appear to affect the development of asymptomatic EAH.

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Armstrong L. E., Johnson E. C., Kunces L. J., Ganio M. S., Judelson D. A., Kupchak B. R., et al. . (2014). Drinking to thirst versus drinking ad libitum during road cycling. J. Athl. Train. 49, 624–631. 10.4085/1062-6050-49.3.85 PubMed DOI PMC

Armstrong L. E., Johnson E. C., McKenzie A. L., Ellis L. A., Williamson K. H. (2015). Ultraendurance cycling in a hot environment: Thirst, fluid consumption, and water balance. J. Strength Cond Res. 29, 869–876. 10.1519/JSC.0000000000000822 PubMed DOI

Armstrong L. E., Johnson E. C., McKenzie A. L., Ellis L. A., Williamson K. H. (2016). Endurance cyclist fluid intake, hydration status, thirst and thermal sensations: gender differences. Int. J. Sport Nutr. Exerc. Metabol. 26, 161–167. 10.1123/ijsnem.2015-0188 PubMed DOI

Bennett B. L., Hew-Butler T., Hoffman M. D., Rogers I. R., Rosner M. H. (2014). Wilderness medical society practice guidelines for treatment of exercise-associated hyponatremia: 2014 update. Wilderness Environ. Med. 25, S30–S42. 10.1016/j.wem.2014.08.009 PubMed DOI

Black K. E., Skidmore P., Brown R. C. (2014). Fluid balance of cyclists during a 387-km race. Eur. J. Sport Sci. 14, 421–428. 10.1080/17461391.2012.711860 PubMed DOI

Chlíbková D., Knechtle B., Rosemann T., Žákovská A., Tomášková I. (2014a). The prevalence of exercise-associated hyponatremia in 24-hour ultra-mountain bikers, 24-hour ultra-runners and multi-stage ultra-mountain bikers in the Czech Republic. J. Int. Soc. Sports Nutr. 11:3. 10.1186/1550-2783-11-3 PubMed DOI PMC

Chlíbková D., Knechtle B., Rosemann T., Žákovská A., Tomášková I., Shortall M., et al. . (2014b). Changes in foot volume, body composition, and hydration status in male and female 24-hour ultra-mountain bikers. J. Int. Soc. Sports Nutr. 11:12. 10.1186/1550-2783-11-12 PubMed DOI PMC

Chlíbková D., Knechtle B., Rosemann T., Tomášková I., Novotný J., Žákovská A., et al. . (2015). Rhabdomyolysis and exercise-associated hyponatremia in ultra-bikers and ultra-runners. J. Int. Soc. Sports Nutr. 12:29. 10.1186/s12970-015-0091-x PubMed DOI PMC

Chlíbková D., Rosemann T., Knechtle B., Sengeis M., Posh L., Tomášková I. (2016a). Pre-race characteristics and race performance in hyponatremic and normonatremic finishers of Czech ultra-races. Acta Gymnica. 46, 109–116. 10.5507/ag.2016.013 DOI

Chlíbková D., Rosemann T., Posch L., Matoušek R., Knechtle B. (2016b). Pre- and post-race hydration status in hyponatremic and non-hyponatremic ultra-endurance athletes. Chin J. Physiol. 59, 173–183. 10.4077/CJP.2016.BAE391 PubMed DOI

Costa R. J. S., Teixera A., Rama L., Swancott A. J. M., Hardy L. D., Lee B., et al. . (2013). Water and sodium intake habits and status of ultra-endurance runners during a multistage ultra-marathon conducted in a hot ambient environment: an observational field based study. Nutr. J. 12:13. 10.1186/1475-2891-12-13 PubMed DOI PMC

García-Rovés P. M., Terrados N., Fernández S. F., Patterson A. M. (1998). Macronutrients intake of top level cyclists during continuous competition - Change in the feeding pattern. Int. J. Sports Med. 19, 61–67. 10.1055/s-2007-971882 PubMed DOI

Garth A. K., Burke L. M. (2013). What do athletes drink during competitive sporting activities? Sports Med. 43, 539–564. 10.1007/s40279-013-0028-y PubMed DOI

Greenleaf J. E. (1992). Problem: Thirst, drinking behavior, and involuntary dehydration. Med. Sci. Sports Exerc. 24, 645–656. 10.1249/00005768-199206000-00007 PubMed DOI

Hew-Butler T. D., Ayus J. C., Kipps C., Maughan R. J., Mettler S., Meeuwisse W., et al. . (2008a). Statement of the Second international exercise-associated hyponatremia consensus development conference, New Zealand, 2007. Clin. J. Sport Med. 18, 111–121. 10.1097/JSM.0b013e318168ff31 PubMed DOI

Hew-Butler T. D., Rosner M. H., Fowkes-Godek S., Dugas J. P., Hoffman M. D., Lewis D. P., et al. . (2015). Statement of the third international exercise-associated hyponatremia consensus development conference, carlsbad, california, 2015. Clin. J. Sport Med. 25, 303–320. 10.1097/JSM.0000000000000221 PubMed DOI

Hew-Butler T., Jordaan E., Stuempfle K. J., Speedy D. B., Siegel A. J., Noakes T. D., et al. . (2008b). Osmotic and nonosmotic regulation of arginine vasopressin during prolonged endurance exercise. J. Clin. Endocrinol. Metab. 93, 2072–2078. 10.1210/jc.2007-2336 PubMed DOI PMC

Hoffman M. D., Stuempfle K. J. (2014). Hydration strategies, weight change and performance in a 161 km ultramarathon. Res. Sports Med. 22, 213–225. 10.1080/15438627.2014.915838 PubMed DOI

Knechtle B., Knechtle P., Rosemann T. (2011a). Do male 100-km ultra-marathoners overdrink? Int. J. Sports Physiol. Perform. 6, 195–207. 10.1123/ijspp.6.2.195 PubMed DOI

Knechtle B., Knechtle P., Roseman T. (2011). No case of exercise-associated hyponatraemia in male ultra-endurance mountain bikers in the ‘Swiss Bike Masters’. Chin. J. Physiol. 54, 379–384. 10.4077/CJP.2011.AMM050 PubMed DOI

Knoth C., Knechtle B., Rüst C. A., Rosemann T., Lepers R. (2012). Participation and performance trends in multistage ultramarathons–the ‘Marathon des Sables’ 2003-2012. Extrem Physiol. Med. 1:13. 10.1186/2046-7648-1-13 PubMed DOI PMC

Krabak B. J., Parker K. M., DiGirolamo A. (2016). Exercise-associated collapse: is hyponatremia in our head? PMR 8, S61–S68. 10.1016/j.pmrj.2015.10.002 PubMed DOI

Lebus D. K., Casazza G. A., Hoffman M. D., Van Loan M. D. (2010). Can changes in body mass and total body water accurately predict hyponatremia after a 161-km running race? Clin. J. Sport Med. 20, 193–199. 10.1097/JSM.0b013e3181da53ea PubMed DOI

Maughan R. J., Shirreffs S. M. (2008). Development of individual hydration strategies for athletes. Int. J. Sport Nutr. Exerc. Metabol. 18, 457–472. 10.1123/ijsnem.18.5.457 PubMed DOI

Nichols P. E., Jonnalagadda S. S., Rosenbloom C. A., Trinkaus M. (2005). Knowledge, attitudes, and behaviors regarding hydration and fluid replacement of collegiate athletes. Int. J. Sport Nutr. Exerc. Metab. 15, 515–527. 10.1123/ijsnem.15.5.515 PubMed DOI

Noakes T. (2012). The Serious Problem of Overhydration in Endurance Sports. Champaign, IL: Human Kinetics.

Noakes T. D. (2011). Changes in body mass alone explain almost all of the variance in the serum sodium concentrations during prolonged exercise. Has commercial influence impeded scientific endeavour? Br. J. Sports Med. 45, 475–477. 10.1136/bjsm.2010.075697 PubMed DOI

Noakes T. D., Sharwood K., Speedy D., Hew-Butler T., Reid S., Dugas J., et al. . (2005). Three independent biological mechanisms cause exercise-associated hyponatremia: Evidence from 2,135 weighed competitive athletic performances. Proc. Natl. Acad. Sci. U.S.A. 102, 18550–18555. 10.1073/pnas.0509096102 PubMed DOI PMC

Nolte H. W., Hew-Butler T., Noakes T. D., Duvenage C. S. J. (2015). Exercise-asscoiated hyponatremic encephalopathy and exertional heatstroke in a soldier: high rates of fluid intake during exercise caused rather than prevented a fatal outcome. Phys. Sportsmed. 43, 93–98. 10.1080/00913847.2015.1001714 PubMed DOI

O'Neal E. K., Wingo J. E., Richardson M. T., Leeper J. D., Neggers Y. H., Bishop P. A. (2011). Half-marathon and full-marathon runners' hydration practices and perceptions. J. Athl. Train. 46, 581–591. PubMed PMC

Phillips P. A., Rolls B. J., Ledingham J. G. G., Morton J. J. (1984). Body fluid changes, thirst and drinking in man during free access to water. Physiol. Behav. 33, 357–363. 10.1016/0031-9384(84)90154-9 PubMed DOI

Rolls B. J. (1993). Palatability and fluid intake, in Fluid Replacement and Heat Stress, ed Marriott B. M. (Washington, DC: National Academy Press; ), 161–167.

Rose S. C., Chipps J. A., Peters E. M. (2007). Fluid use in mountain bikers–self-reported practices. S. Afr. J. Sports Med. 19, 52–58. 10.17159/2078-516X/2007/v19i2a266 DOI

Sawka M. N., Burke L. M., Eichner E. R. (2007). Exercise and fluid replacement. Med. Sci. Sports Exerc. 39, 377–390. 10.1249/mss.0b013e31802ca597 PubMed DOI

Scotney B., Reid S. (2015). Body weight, serum sodium levels, and renal function in an ultra-distance mountain run. Clin. J. Sport Med. 25, 341–346. 10.1097/JSM.0000000000000131 PubMed DOI

Smith H. R., Dhatt G. S., Melia W. M., Dickinson J. G. (1995). Cystic fibrosis presenting as hyponatraemic heat exhaustion. BMJ 310, 579–580. 10.1136/bmj.310.6979.579 PubMed DOI PMC

Williams J., Tzortziou-Brown V., Malliaras P., Perry M., Kipps C. (2012). Hydration strategies of runners in the London marathon. Clin. J. Sport Med. 22, 152–156. 10.1097/JSM.0b013e3182364c45 PubMed DOI

Winger J. M., Dugas J. P., Dugas L. R. (2011). Beliefs about hydration and physiology drive drinking behaviours in runners. Br. J. Sports Med. 45, 646–649. 10.1136/bjsm.2010.075275 PubMed DOI

Winger J. M., Hoffman M. D., Hew-Butler T. D., Stuempfle K. J., Dugas J. P., Fogard K., et al. . (2013). The effect of physiology and hydration beliefs on race behavior and postrace sodium in 161-km ultramarathon finishers. Int. J. Sports Physiol. Perform. 8, 536–541. 10.1123/ijspp.8.5.536 PubMed DOI

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