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Articles

Adequacy of Daily Fluid Intake Volume Can Be Identified From Urinary Frequency and Perceived Thirst in Healthy Adults

ORCID Icon, ORCID Icon & ORCID Icon
Pages 235-242 | Received 19 Mar 2019, Accepted 30 Jun 2019, Published online: 26 Jul 2019

References

  • Sontrop JM, Dixon SN, Garg AX, Buendia-Jimenez I, Dohein O, Huang S-HS, Clark WF. Association between water intake, chronic kidney disease, and cardiovascular disease: a cross-sectional analysis of NHANES data. Am J Nephrol. 2013;37(5):434–442. doi:10.1159/000350377.
  • Strippoli GF, Craig JC, Rochtchina E, Flood VM, Wang JJ, Mitchell P. Fluid and nutrient intake and risk of chronic kidney disease. Nephrology. 2011;16(3):326–334. doi:10.1111/j.1440-1797.2010.01415.x.
  • Dai M, Zhao A, Liu A, You L, Wang P. Dietary factors and risk of kidney stone: a case–control study in Southern China. J Renal Nutr. 2013;23(2):e21–e8. doi:10.1053/j.jrn.2012.04.003.
  • Ferraro PM, Taylor EN, Gambaro G, Curhan GC. Dietary and lifestyle risk factors associated with incident kidney stones in men and women. J Urol. 2017;198(4):858–863. doi:10.1016/j.juro.2017.03.124.
  • Sorensen MD, Kahn AJ, Reiner AP, Tseng TY, Shikany JM, Wallace RB, Chi T, Wactawski-Wende J, Jackson RD, O'Sullivan MJ, et al. Impact of nutritional factors on incident kidney stone formation: a report from the WHI OS. J Urol. 2012;187(5):1645–1650. doi:10.1016/j.juro.2011.12.077.
  • Johnson EC, Bardis CN, Jansen LT, Adams J, Kirkland TW, Kavouras SA. Reduced water intake deteriorates glucose regulation in patients with type 2 diabetes. Nutrition Research. 2017;4325–32. doi:10.1016/j.nutres.2017.05.004.
  • O'connell BN, Weinheimer EM, Martin BR, Weaver CM, Campbell WW. Water turnover assessment in overweight adolescents. Obesity. 2011;19(2):292–297. doi:10.1038/oby.2010.225.
  • Murray R. Fluid needs in hot and cold environments. Int J Sport Nutr. 1995;5(s1):S62–S73. doi:10.1123/ijsn.5.s1.s62.
  • Rodriguez NR, Di NM, Langley S. American College of Sports Medicine position stand. Nutrition and athletic performance. Med Sci Sports Exerc. 2009;41(3):709–731.
  • Perrier ET, Buendia-Jimenez I, Vecchio M, Armstrong LE, Tack I, Klein A. Twenty-four-hour urine osmolality as a physiological index of adequate water intake. Dis Markers. 2015;2015:231063. doi:10.1155/2015/231063.
  • Armstrong LE, Johnson EC, McKenzie AL, Muñoz CX. An empirical method to determine inadequacy of dietary water. Nutrition. 2016;32(1):79–82. doi:10.1016/j.nut.2015.07.013.
  • EFSA Panel on Dietetic Products, Nutrition, and Allergies. Scientific opinion on dietary reference values for water. EFSA J. 2010;8(3):1459.
  • Borghi L, Meschi T, Amato F, Briganti A, Novarini A, Giannini A. Urinary volume, water and recurrences in idiopathic calcium nephrolithiasis: a 5-year randomized prospective study. J Urol. 1996;155(3):839–843.
  • Clark WF, Sontrop JM, Macnab JJ, Suri RS, Moist L, Salvadori M, Garg AX. Urine volume and change in estimated GFR in a community-based cohort study. Clin J Am Soc Nephrol. 2011;6(11):2634–2641. doi:10.2215/CJN.01990211.
  • Boertien WE, Meijer E, Li J, Bost JE, Struck J, Flessner MF, Gansevoort RT, Torres VE. Relationship of copeptin, a surrogate marker for arginine vasopressin, with change in total kidney volume and GFR decline in autosomal dominant polycystic kidney disease: results from the CRISP cohort. Am J Kidney Dis. 2013;61(3):420–429. doi:10.1053/j.ajkd.2012.08.038.
  • Boertien WE, Meijer E, Zittema D, van Dijk MA, Rabelink TJ, Breuning MH, Struck J, Bakker SJL, Peters DJM, de Jong PE, et al. Copeptin, a surrogate marker for vasopressin, is associated with kidney function decline in subjects with autosomal dominant polycystic kidney disease. Nephrol Dial Transplant. 2012;27(11):4131–4137. doi:10.1093/ndt/gfs070.
  • Burchfield JM, Ganio MS, Kavouras SA, Adams JD, Gonzalez MA, Ridings CB, Moyen NE, Tucker MA. 24-h void number as an indicator of hydration status. Eur J Clin Nutr. 2015;69(5):638–641. doi:10.1038/ejcn.2014.278.
  • Tucker MA, Gonzalez MA, Adams JD, Burchfield JM, Moyen NE, Robinson FB, Schreiber BA, Ganio MS. Reliability of 24-h void frequency as an index of hydration status when euhydrated and hypohydrated. Eur J Clin Nutr. 2016;70(8):908–911. doi:10.1038/ejcn.2015.233.
  • Robertson GL. Thirst and vasopressin function in normal and disordered states of water balance. J Lab Clin Med. 1983;101(3):351–371.
  • Thompson C, Bland J, Burd J, Baylis P. The osmotic thresholds for thirst and vasopressin release are similar in healthy man. Clin Sci. 1986;71(6):651–656.
  • Leaf A. Dehydration in the elderly. Waltham (MA): Massachusetts Medical Society; 1984.
  • Mack GW, Weseman CA, Langhans GW, Scherzer H, Gillen CM, Nadel ER. Body fluid balance in dehydrated healthy older men: thirst and renal osmoregulation. J Appl Physiol. 1994;76(4):1615–1623. doi:10.1152/jappl.1994.76.4.1615.
  • Phillips PA, Rolls BJ, Ledingham JG, Forsling ML, Morton JJ, Crowe MJ, Wollner L. Reduced thirst after water deprivation in healthy elderly men. N Engl J Med. 1984;311(12):753–759. doi:10.1056/NEJM198409203111202.
  • de Castro JM. The relationship of spontaneous macronutrient and sodium intake with fluid ingestion and thirst in humans. Physiol Behav. 1991;49(3):513–519.
  • Greenleaf JE, Sargent F. Voluntary dehydration in man. J Appl Physiol. 1965;20(4):719–724. doi:10.1152/jappl.1965.20.4.719.
  • Passe D, Horn M, Stofan J, Horswill C, Murray R. Voluntary dehydration in runners despite favorable conditions for fluid intake. Int J Sport Nutr Exerc Metab. 2007;17(3):284–295. doi:10.1123/ijsnem.17.3.284.
  • Takamata A, Mack G, Stachenfeld NS, Nadel ER. Body temperature modification of osmotically induced vasopressin secretion and thirst in humans. Am J Physiol Regul Integr Comp Physiol. 1995;269(4):R874–R80. doi:10.1152/ajpregu.1995.269.4.R874.
  • Cheuvront SN, Sawka MN. Hydration assessment of athletes. Sports Sci Exchange. 2005;18(2):1–6.
  • Greenleaf JE. Problem: thirst, drinking behavior, and involuntary dehydration. Med Sci Sports Exerc. 1992;24(6):645–656.
  • Maresh CM, Gabaree-Boulant CL, Armstrong LE, Judelson DA, Hoffman JR, Castellani JW, Kenefick RW, Bergeron MF, Casa DJ. Effect of hydration status on thirst, drinking, and related hormonal responses during low-intensity exercise in the heat. J Appl Physiol. 2004;97(1):39–44. doi:10.1152/japplphysiol.00956.2003.
  • McDermott BP, Casa DJ, Yeargin SW, Ganio MS, Lopez RM, Mooradian EA. Hydration status, sweat rates, and rehydration education of youth football campers. J Sport Rehabil. 2009;18(4):535–552. doi:10.1123/jsr.18.4.535.
  • Athwal BS, Berkley KJ, Hussain I, Brennan A, Craggs M, Sakakibara R, Frackowiak RS, Fowler CJ. Brain responses to changes in bladder volume and urge to void in healthy men. Brain. 2001;124(Pt 2):369–377. doi:10.1093/brain/124.2.369.
  • Engell DB, Maller O, Sawka MN, Francesconi RN, Drolet L, Young AJ. Thirst and fluid intake following graded hypohydration levels in humans. Physiol Behav. 1987;40(2):229–236.
  • Liu H, Wu T. Estimating the area under a receiver operating characteristic (ROC) curve for repeated measures design. J Stat Softw. 2003;8(12):1–18.
  • Bewick V, Cheek L, Ball J. Statistics review 13: receiver operating characteristic curves. Crit Care. 2004;8(6):508. doi:10.1186/cc3000.
  • Youden WJ. Index for rating diagnostic tests. Cancer. 1950;3(1):32–35. doi:10.1002/1097-0142(1950)3:1<32::aid-cncr2820030106>3.0.co;2-3.
  • Glas AS, Lijmer JG, Prins MH, Bonsel GJ, Bossuyt PM. The diagnostic odds ratio: a single indicator of test performance. J Clin Epidemiol. 2003;56(11):1129–1135. doi:10.1016/S0895-4356(03)00177-X.
  • Aarts E, Verhage M, Veenvliet JV, Dolan CV, Van Der Sluis S. A solution to dependency: using multilevel analysis to accommodate nested data. Nat Neurosci. 2014;17(4):491. doi:10.1038/nn.3648.
  • R Core Team. R: a language and environment for statistical computing. Vienna (Austria): R Foundation for Statistical Computing; 2015. ISBN 3-900051-07-0. URL http://www.R-project.org; 2018.
  • Bates D, Mächler M, Bolker B, Walker S. Fitting linear mixed-effects models using lme4. arXiv preprint arXiv:14065823; 2014.
  • Akaike H. A new look at the statistical model identification. IEEE Trans Automat Contr. 1974;19(6):716–723. doi:10.1109/TAC.1974.1100705.
  • Cheuvront SN, Kenefick RW. Am I drinking enough? Yes, no, and maybe. J Am Coll Nutr. 2016;35(2):185–192. doi:10.1080/07315724.2015.1067872.
  • Armstrong LE. Hydration assessment techniques. Nutr Rev. 2005;63S40–S54. doi:10.1111/j.1753-4887.2005.tb00153.x.
  • Armstrong LE. Assessing hydration status: the elusive gold standard. J Am Coll Nutr. 2007;26(5 Suppl):575S–584S.
  • Cheuvront SN, Ely BR, Kenefick RW, Sawka MN. Biological variation and diagnostic accuracy of dehydration assessment markers. Am J Clin Nutr. 2010;92(3):565–573. doi:10.3945/ajcn.2010.29490.
  • Armstrong LE, Maughan RJ, Senay LC, Shirreffs SM. Limitations to the use of plasma osmolality as a hydration biomarker. Am J Clin Nutr. 2013;98(2):503–504. doi:10.3945/ajcn.113.065466.
  • Cheuvront SN, Kenefick RW, Zambraski EJ. Spot urine concentrations should not be used for hydration assessment: a methodology review. Int J Sport Nutr Exerc Metab. 2015;25(3):293–297. doi:10.1123/ijsnem.2014-0138.
  • Tucker MA, Butts CL, Satterfield AZ, Six A, Johnson EC, Ganio MS. Spot sample urine specific gravity does not accurately represent small decreases in plasma volume in resting healthy males. J Am Coll Nutr. 2018;37(1):17–23. doi:10.1080/07315724.2017.1323692.
  • Cheuvront SN, Muñoz CX, Kenefick RW. The void in using urine concentration to assess population fluid intake adequacy or hydration status. Am J Clin Nutr. 2016;104(3):553–556. doi:10.3945/ajcn.115.129858.
  • Armstrong LE, Kavouras SA, Walsh NP, Roberts WO. Diagnosing dehydration? Blend evidence with clinical observations. Curr Opin Clin Nutr Metab Care. 2016;19(6):434–438. doi:10.1097/MCO.0000000000000320.
  • Manz F, Wentz A. 24-h hydration status: parameters, epidemiology and recommendations. Eur J Clin Nutr. 2003;57(S2):S10. doi:10.1038/sj.ejcn.1601896.
  • Curhan GC, Willett WC, Knight EL, Stampfer MJ. Dietary factors and the risk of incident kidney stones in younger women: Nurses’ Health Study II. Arch Intern Med. 2004;164(8):885–891. doi:10.1001/archinte.164.8.885.
  • Van Haarst E, Heldeweg E, Newling D, Schlatmann T. The 24-h frequency-volume chart in adults reporting no voiding complaints: defining reference values and analysing variables. BJU Int. 2004;93(9):1257–1261. doi:10.1111/j.1464-4096.2004.04821.x.
  • Brown JS, Grady D, Ouslander JG, Herzog AR, Varner RE, Posner SF. Prevalence of urinary incontinence and associated risk factors in postmenopausal women. Obstet Gynecol. 1999;94(1):66–70.
  • Chute CG, Panser LA, Girman CJ, Oesterling JE, Guess HA, Jacobsen SJ, Lieber MM. The prevalence of prostatism: a population-based survey of urinary symptoms. J Urol. 1993;150(1):85–89. doi:10.1016/s0022-5347(17)35405-8.
  • Garraway W, Lee R, Collins G. High prevalence of benign prostatic hypertrophy in the community. Lancet. 1991;338(8765):469–471. doi:10.1016/0140-6736(91)90543-x.
  • Mueller E, Latini J, Lux M, Stablein U, Brubaker L, Kreder K, Fitzgerald MP. Gender differences in 24-hour urinary diaries of asymptomatic North American adults. J Urol. 2005;173(2):490–492. doi:10.1097/01.ju.0000149947.28100.cd.
  • Perinpam M, Ware EB, Smith JA, Turner ST, Kardia SL, Lieske JC. Key influence of sex on urine volume and osmolality. Biol Sex Differ. 2016;7(1):12doi:10.1186/s13293-016-0063-0.
  • Perucca J, Bouby N, Valeix P, Bankir L. Sex difference in urine concentration across differing ages, sodium intake, and level of kidney disease. Am J Physiol Regul Integr Comp Physiol. 2007;292(2):R700–R5. doi:10.1152/ajpregu.00500.2006.
  • Johnson E, Muñoz C, Jimenez L, Le Bellego L, Kupchak B, Kraemer W, Casa D, Maresh C, Armstrong L. Hormonal and thirst modulated maintenance of fluid balance in young women with different levels of habitual fluid consumption. Nutrients. 2016;8(5):302. doi:10.3390/nu8050302.
  • Munoz C, Johnson E, Demartini J, Huggins R, McKenzie A, Casa D, et al. Assessment of hydration biomarkers including salivary osmolality during passive and active dehydration. Eur J Clin Nutr. 2013;67(12):1257. doi:10.1038/ejcn.2013.195.

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