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Special Report

The water-drinking test: a review

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Pages 413-416 | Published online: 09 Jan 2014

References

  • Gordon MO, Beiser JA, Brandt JD et al. The Ocular Hypertension Treatment Study: baseline factors that predict the onset of primary open-angle glaucoma. Arch. Ophthalmol. 120(6), 714–720; discussion 829–830 (2002).
  • The Advanced Glaucoma Intervention Study (AGIS): 7. The relationship between control of intraocular pressure and visual field deterioration. The AGIS Investigators. Am. J. Ophthalmol. 130(4), 429–440 (2000).
  • Leske MC, Heijl A, Hyman L, Bengtsson B, Dong L, Yang Z; EMGT Group. Predictors of long-term progression in the early manifest glaucoma trial. Ophthalmology 114(11), 1965–1972 (2007).
  • Asrani S, Zeimer R, Wilensky J, Gieser D, Vitale S, Lindenmuth K. Large diurnal fluctuations in intraocular pressure are an independent risk factor in patients with glaucoma. J. Glaucoma 9(2), 134–142 (2000).
  • Nouri-Mahdavi K, Hoffman D, Coleman AL et al. Advanced Glaucoma Intervention Study. Predictive factors for glaucomatous visual field progression in the Advanced Glaucoma Intervention Study. Ophthalmology 111(9), 1627–1635 (2004).
  • Caprioli J, Coleman AL. Intraocular pressure fluctuation a risk factor for visual field progression at low intraocular pressures in the advanced glaucoma intervention study. Ophthalmology 115(7), 1123–1129.e3 (2008).
  • Konstas AG, Quaranta L, Mikropoulos DG et al. Peak intraocular pressure and glaucomatous progression in primary open-angle glaucoma. J. Ocul. Pharmacol. Ther. 28(1), 26–32 (2012).
  • De Moraes CG, Juthani VJ, Liebmann JM et al. Risk factors for visual field progression in treated glaucoma. Arch. Ophthalmol. 129(5), 562–568 (2011).
  • Gardiner SK, Johnson CA, Demirel S. Factors predicting the rate of functional progression in early and suspected glaucoma. Invest. Ophthalmol. Vis. Sci. 53(7), 3598–3604 (2012).
  • Drance SM. Diurnal variation of intraocular pressure in treated glaucoma. significance in patients with chronic simple glaucoma. Arch. Ophthalmol. 70, 302–311 (1963).
  • Barkana Y, Anis S, Liebmann J, Tello C, Ritch R. Clinical utility of intraocular pressure monitoring outside of normal office hours in patients with glaucoma. Arch. Ophthalmol. 124(6), 793–797 (2006).
  • Rasmussen KE, Jorgensen HA. Diagnostic value of the water-drinking test in early detection of simple glaucoma. Acta Ophthalmol. (Copenh.) 54(2 p), 160–166 (1976).
  • Roth JA. Inadequate diagnostic value of the water-drinking test. Br. J. Ophthalmol. 58(1), 55–61 (1974).
  • Kronfeld PC. Water drinking and outflow facility. Invest. Ophthalmol. 14(1), 49–52 (1975).
  • Susanna R Jr, Vessani RM, Sakata L, Zacarias LC, Hatanaka M. The relation between intraocular pressure peak in the water-drinking test and visual field progression in glaucoma. Br. J. Ophthalmol. 89(10), 1298–1301 (2005).
  • Susanna R Jr, Hatanaka M, Vessani RM, Pinheiro A, Morita C. Correlation of asymmetric glaucomatous visual field damage and water-drinking test response. Invest. Ophthalmol. Vis. Sci. 47(2), 641–644 (2006).
  • Fan JC, McGhee CN. Publication and citation in ophthalmology: glaucoma and the water-provocation test – wring out the old and ring in the new? Clin. Experiment. Ophthalmol. 36(4), 304–305 (2008).
  • Danesh-Meyer HV. The water-drinking test: the elegance of simplicity. Clin. Experiment. Ophthalmol. 36(4), 301–303 (2008).
  • Goldberg I, Clement CI. The water-drinking test. Am. J. Ophthalmol. 150(4), 447–449 (2010).
  • Medeiros FA, Pinheiro A, Moura FC, Leal BC, Susanna R Jr. Intraocular pressure fluctuations in medical versus surgically treated glaucomatous patients. J. Ocul. Pharmacol. Ther. 18(6), 489–498 (2002).
  • Vasconcelos-Moraes CG, Susanna R Jr. Correlation between the water-drinking test and modified diurnal tension curve in untreated glaucomatous eyes. Clinics (Sao. Paulo) 63(4), 433–436 (2008).
  • De Moraes CG, Furlanetto RL, Reis AS, Vegini F, Cavalcanti NF, Susanna R Jr. Agreement between stress intraocular pressure and long-term intraocular pressure measurements in primary open-angle glaucoma. Clin. Experiment. Ophthalmol. 37(3), 270–274 (2009).
  • Kumar RS, de Guzman MH, Ong PY, Goldberg I. Does peak intraocular pressure measured by water-drinking test reflect peak circadian levels? A pilot study. Clin. Experiment. Ophthalmol. 36(4), 312–315 (2008).
  • Kerr NM, Danesh-Meyer HV. Understanding the mechanism of the water-drinking test: the role of fluid challenge volume in patients with medically controlled primary open-angle glaucoma. Clin. Experiment. Ophthalmol. 38(1), 4–9 (2010).
  • Stamper R. The relationship between progression of glaucoma and supine and WDT. World Glaucoma Congress, Boston, MA, USA, 8–11 July 2009(Poster 282).
  • De Moraes CG, Reis AS, Cavalcante AF, Sano ME, Susanna R Jr. Choroidal expansion during the water-drinking test. Graefes Arch. Clin. Exp. Ophthalmol. 247(3), 385–389 (2009).
  • Brubaker RF. Importance of outflow facility. International Glaucoma Review 3, 1 (2001).
  • Danesh-Meyer HV, Papchenko T, Tan YW, Gamble GD. Medically controlled glaucoma patients show greater increase in intraocular pressure than surgically controlled patients with the water-drinking test. Ophthalmology 115(9), 1566–1570 (2008).
  • Guedes RA, Guedes VM, Chaoubah A. Use of water-drinking test after non-penetrating deep sclerectomy. J. Fr. Ophtalmol. 28(10), 1076–1080 (2005).
  • Konstas AG, Topouzis F, Leliopoulou O et al. 24-hour intraocular pressure control with maximum medical therapy compared with surgery in patients with advanced open-angle glaucoma. Ophthalmology 113(5), 761–765 (2006).
  • Susanna R Jr, Sussana R Jr, Sheu WP; Latin American Glaucoma Society. Comparison of latanoprost with fixed-combination dorzolamide and timolol in adult patients with elevated intraocular pressure: an eight-week, randomized, open-label, parallel-group, multicenter study in Latin America. Clin. Ther. 26(5), 755–768 (2004).
  • Vetrugno M, Sisto D, Trabucco T, Balducci F, Delle Noci N, Sborgia C. Water-drinking test in patients with primary open-angle glaucoma while treated with different topical medications. J. Ocul. Pharmacol. Ther. 21(3), 250–257 (2005).
  • Malerbi FK, Hatanaka M, Vessani RM, Susanna R Jr. Intraocular pressure variability in patients who reached target intraocular pressure. Br. J. Ophthalmol. 89(5), 540–542 (2005).
  • Armaly MF, Krueger DE, Maunder L et al. Biostatistical analysis of the collaborative glaucoma study. I. Summary report of the risk factors for glaucomatous visual field defects. Arch. Ophthalmol. 98(12), 2163–2171 (1980).
  • Yoshikawa K, Inoue T, Inoue Y. Normal tension glaucoma: the value of predictive tests. Acta Ophthalmol. (Copenh). 71(4), 463–470 (1993).
  • Medina FM, Rodrigues FK, Filho Pde T, Matsuo T, Vasconcellos JP, Costa VP. Reproducibility of water-drinking test performed at different times of the day. Arq. Bras. Oftalmol. 72(3), 283–290 (2009).
  • Hatanaka M, Babic M, Alencar LM, Vessani RM, Suzuki R, Susanna R Jr. Reproducibility of the modified diurnal tension curve and water dinking test. Program and abstracts of the Association for Research in Vision and Ophthalmology. Fort Lauderdale, FL, USA, 6–10 May 2007 (Abstract 1274).

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