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Anterior Segment Imaging and the Intraocular Pressure Lowering Effect of Cataract Surgery for Open and Narrow Angle Glaucoma

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Pages 149-154 | Received 26 Jun 2012, Accepted 29 Jun 2012, Published online: 19 Nov 2012

REFERENCES

  • Thylefors B, Negrel AD. The global impact of glaucoma. Bull World Health Organ. 1994;72(3):323–6.
  • Foster PJ, Johnson GJ. Glaucoma in China: How big is the problem. Br J Ophthalmol. 2001 Nov;85(11):1277–82.
  • Quigley HA, Broman AT. The number of people with glaucoma worldwide in 2010 and 2020. Br j Ophtahlmol. 2006 Mar;90(3):262–7.
  • Resnikoff S, Pascolini D, Etyal’ale D, et al. Global data on visual impairment in the year 2002. Bull World Health Organ. 2004 Nov;82(11):844–51.
  • Friedman DS, Jampel HD, Lubomski LH, et al. Surgical strategies for coexisting glaucoma and cataract: An evidence-based update. Ophthalmology. 2002 Oct;109(10):1902–13.
  • Azuara-Blanco A, Burr JM, Cochran C, et al. The effectiveness of early lens extraction with intraocular lens implantation for the treatment of primary angle-closure glaucoma (EAGLE): Study protocol for a randomized control trial. Trials. 2011 May;12:133.
  • Poley BJ, Lindstrom RL, Samuelson TW. Long-term effects of phacoemulsification with intraocular lens implantation in normotensive and ocular hypertensive eyes. J Cataract Refract Surg. 2008 May;34(5):735–42.
  • Poley BJ, Lindstrom RL, Samuelson TW, Schulze R Jr. Intraocular pressure reduction after phacoemulsification with intraocular lens implantation in glaucomatous and nonglaucomatous eyes: Evaluation of a causal relationship between the natural lens and open-angle glaucoma. J Cataract Refract Surg. 2009 Nov;35(11):1946–55.
  • Hata H, Yamane S, Hata S, Shiota H. Preliminary outcomes of primary phacoemulsification plus intraocular lens implantation for primary angle-closure glaucoma. J Med Invest. 2008 Aug;55(3–4):287–91.
  • Lam DS, Leung DY, Tham CC, et al. Randomized trial of early phacoemulsification versus peripheral iridotomy to prevent intraocular pressure rise after acute primary angle closure. Ophthalmology. 2008 Jul;115(7):1134–40.
  • Ge J, Guo Y, Liu Y, et al. New management of angle-closure glaucoma by phacoemulsification with foldable posterior chamber intraocular lens implantation. Yan Ke Xue Bao. 2000 Mar;16(1):22–8.
  • Hayashi K, Hayashi H, Nakao F, Hayashi F. Effect of cataract surgery on intraocular pressure control in glaucoma patients. J Cataract Refract Surg. 2001 Nov;27(11):1779–86.
  • Wishart PK, Atkinson PL. Extracapsular cataract extraction and posterior chamber lens implantation in patients with primary chronic angle-closure glaucoma: Effect on intraocular pressure control. Eye (Lond). 1989;3(Pt 6):706–12.
  • Mierzejewski A, Eliks I, Kaluzny B, et al. Cataract phacoemulsification and intraocular pressure in glaucoma patients. Kin Oczna. 2008;110(1–3):11–7.
  • Kim DD, Doyle JW, Smith MF. Intraocular pressure reduction following phacoemulsification cataract extraction with posterior chamber lens implantation in glaucoma patients. Ophthalmic Surg Lasers. 1999 Jan;30(1):37–40.
  • Shingleton BJ, Laul A, Nagao K, et al. Effect of phacoemulsification on intraocular eyes with pseudoexfoliation: Single-surgeon series. J Cataract Refract Surg. 2008 Nov;34(11):1834–41.
  • Kim KS, Kim JM, Park KH, et al. The effect of cataract surgery on diurnal intraocular pressure fluctuation. J Glaucoma. 2009 Jun-Jul;18(5):399–402.
  • Cimetta DJ, Cimetta AC. Intraocular pressure changes after clear corneal phacoemulsification in nonglaucomatous pseudoexfoliation syndrome. Eur J Ophthalmol. 2008 Jan-Feb;18(1):77–81.
  • Damji KF, Konstas AG, Liebmann JM, et al. Intraocular pressure following phacoemulsification in patients with and without exfoliation syndrome: A 2 year prospective study. Br J Ophthalmol. 2006 Aug;90(8):1014–8.
  • Mathalone N, Hyams M, Neiman S, et al. Long-term intraocular pressure control after clear corneal phacoemulsification in glaucoma patients. J Cataract Refract Surg. 2005 Mar;31(3):479–83.
  • Shingleton BJ, Pasternack JJ, Hung JW, O’Donoghue MW. Three and five year changes in intraocular pressuress after clear corneal phacoemulsification in open angle glaucoma patiets, glaucoma suspects, and normal patients. J Glaucoma. 2006;15(6):494–8.
  • Pohjalainen T, Vesti E, Uusitalo RJ, Laatikainen L. Intraocular pressure after phacoemulsification and intraocular lens implantation in nonglaucomatous eyes with and without exfoliation. J Cataract Refract Surg. 2001 Mar;27(3):426–31.
  • Tong JT, Miller KM. Intraocular pressure change after sutureless phacoemulsification and foldable posterior chamber lens implantation. J Cataract Refract Surg. 1998 Feb;24(2):256–62.
  • Matsumura M, Mizoguchi T, Kuroda S, et al. Intraocular pressure decrease after phacoemulsification-aspiration + intraocular lens implantation in primary open angle glaucoma eyes [in Japanese]. Nihon Ganka Gakkai Zasshi. 1996 Nov;100(11):885–9.
  • Jahn CE. Reduced intraocular pressure after phacoemulsification and posterior chamber intraocular lens implantation. J Cataract Refract Surg. 1997 Oct;23(8):1260–4.
  • Issa SA, Pacheco J, Mahmood U, et al. A novel index for predicting intraocular pressure reduction following cataract surgery. Br J Ophthalmol. 2005 May;89(5):543–6.
  • Su WW, Chen PY, Hsiao CH, Chen HS. Primary phacoemulsification and intraocular lens implantation for acute primary angle-closure. PloS One. 2011;6(5):e20056.
  • Shrivastava A, Singh K. The effect of cataract surgery on intraocular pressure. Curr Opin Ophthalmol. 2010 Mar;21(2):118–22.
  • Huang D, Swanson EA, Lin CP, et al. Optical coherency tomography. Science. 1991 Nov 22;254(5035):1178–81.
  • Radhakrishnan S, Rollins AM, Roth JE, et al. Real-time optical coherence tomography of the anterior segment at 1310 nm. Arch Ophthalmol. 2001 Aug;119(8):1179–85.
  • Izatt JA, Hee MR, Swanson EA, et al. Micrometer-scale resolution imaging of the anterior eye in vivo with optical coherence tomography. Arch Ophthalmol. 1994 Dec;112(12):1584–9.
  • Doors M, Berendschot TT, de Brabander J, et al. Value of optical coherence tomography for anterior segment surgery. J Cataract Refract Surg. 2010 Jul;36(7):1213–29.
  • Radhakrishnan S, Huang D, Smith SD. Optical coherence tomography imaging of the anterior chamber angle. Ophthalmol Clin North Am. 2005 Sep;18(3):375–81.
  • Shin HC, Subrayan V, Tajunisah I. Changes in anterior chamber depth and intraocular pressure after phacoemulsification in eyes with occludable angles. J Cataract Refract Surg. 2010 Aug;36(8):1289–95.
  • Pavlin CJ, Harasiewicz K, Sherar MD, Foster FS. Clinical use of ultrasound biomicroscopy. Ophthalmology. 1991 Mar;98(3):287–95.
  • Dada T, Sihota R, Gadia R, et al. Comparison of anterior segment optical coherence tomography and ultrasound biomicroscopy for assessment of the anterior segment. J Cataract Refract Surg. 2007 May;33(5):837–40.
  • Radhakrishnan S, Goldsmith J, Huang D, et al. Comparison of optical coherence tomography and ultrasound biomicroscopy for detection of narrow anterior chamber angles. Arch Ophthalmol. 2005 Aug;123(8):1053–9.
  • Ishikawa H, Inazumi K, Liebmann JM, Ritch R. Inadvertent corneal indentation can cause artifactitious widening of the iridocorneal angle on ultrasound biomicroscopy. Ophthalmic Surg Lasers. 2000 Jul-Aug;31(4):342–5.
  • Quek DT, Nongpiur ME, Perera SA, Aung T. Angle imaging: Advances and challenges. Indian J Ophthalmol. 2011 Jan;59 Suppl:S69–75.
  • Pavlin CJ, Ritch R, Foster FS. Ultrasound biomicroscopy in plateau iris syndrome. Am J Ophthalmol. 1992 Apr 15;113(4):390–5.
  • Kumar RS, Baskaran M, Chew PT, et al. Prevalence of plateau iris in primary angle closure suspects an ultrasound biomicroscopy study. Ophthalmology. 2008 Mar;115(3):430–4.
  • Mochizuki H, Takenaka J, Sugimoto Y, et al. Comparison of the prevalence of plateau iris configuration between angle-closure glaucoma and open-angle glaucoma using ultrasound biomicroscopy. J Glaucoma. 2011 Jun-Jul;20(5):315–8.
  • Leung CK, Chan WM, Ko CY, et al. Visualization of anterior chamber angle dynamics using optical coherence tomography. Ophthalmology. 2005 Jun;112(6):980–4.
  • Parc C, Laloum J, Berges O. Comparison of optical coherence tomography and ultrasound biomicroscopy for detection of plateau iris. J Fr Ophtalmol. 2010 Apr;33(4):266.e1–3.
  • Schwenn O, Dick HB, Krummenauer F, et al. Intraocular pressure after small incision cataract surgery: Temporal sclerocorneal versus clear corneaal incision. J Cataract Refract Surg. 2001 Mar;27(3):421–5.
  • Suzuki R, Kuroki S, Fujiwara N. Ten-year follow-up of intraocular pressure after phacoemulsification and aspiration with intraocular lens implantation performed by the same surgeon. Ophthalmologica. 1997;211(2):79–83.
  • Pohjalainen T, Vesti E, Uusitalo RJ, Laatikainen L. Phacoemulsification and intraocular lens implantation in eyes with open-angle glaucoma. Acta Ophthalmol Scand. 2001 Jun;79(3):313–6.
  • Merkur A, Damji KF, Mintsioulis G, Hodge WG. Intraocular pressure decrease after phacoemulsification in patients with pseudoexfoliation syndrome. J Cataract Refract Surg. 2001 Apr;27(4):528–32.
  • Yalvac I, Airaksinen PJ, Tuulonen A. Phacoemulsification with and without trabeculectomy in patients with glaucoma. Ophthalmic Surg Lasers. 1997 Jun;28(6):469–75.
  • Gunning FP, Greve EL. Lens extraction for uncontrolled angle-closure glaucoma: Long-term follow-up. J Cataract Refract Surg. 1998 Oct;24(10):1347–56.
  • Kim M, Park KH, Kim TW, Kim DM. Changes in anterior chamber configuration after cataract surgery as measured by anterior segment optical coherence tomography. Korean J Ophthalmol. 2011 Apr;25(2):77–83.
  • Dawczynski J, Koenigsdoerffer E, Augsten R, Strobel J. Anterior segment optical coherence tomography for evaluation of changes in anterior chamber angle and depth after intraocular lens implantation in eyes with glaucoma. Eur J Ophthalmol. 2007 May-Jun;17(3):363–7.
  • Tran HV, Liebmann JM, Ritch R. Iridociliary apposition in plateau iris syndrome persists after cataract extraction. Am J Ophthalmol. 2003 Jan;135(1):40–3.
  • Cho YK. Early intraocular pressure and anterior chamber depth changes phacoemulsification and intraocular lens implantation in nonglaucomatous eyes: Comparison of groups stratified by axial length. J Cataract Refract Surg. 2008 Jul;34(7):1104–9.
  • Wang N, Chintala SK, Fini ME, Schuman JS. Ultrasound activates the TM ELAM-1/IL/NF-kB response: A potential mechanism for intraocular pressure reduction after phacoemulsification. Invest Ophthalmol Vis Sci. 2003 May;44(5):1977–81.

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