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Case Report

Vitreal pathogenic role in optic pit foveolar retinoschisis and central serous chorioretinopathy

, OD MS FAAO, , OD MBA FAAO, , OD PhD FAAO & , BS
Pages 390-398 | Received 09 Jun 2009, Accepted 27 May 2003, Published online: 15 Apr 2021

REFERENCES

  • Gass JD. Idiopathic senile macular hole: Its early stages and pathogenesis. Arch Ophthalmol 1988; 106: 629–639.
  • Gass JDM. Stereoscopic Atlas of Macular Diseases: Diagnosis and Treatment, 3rd ed. St Louis : CV Mosby; 1987: 684–693.
  • Ikeda T, Sato K, Katano T, Hayashi Y. Attached posterior hyaloid membrane and pathogenesis of honeycombed cystoid macular edema in patients with diabetes. Am J Ophthalmol 1999; 127: 478–479.
  • Smiddy WE, Michels RG, Glasser BM, de Bustros S. Vitrectomy for impending idiopathic macular holes. Am J Ophthalmol 1988; 105: 371–376.
  • Jost BF, Hutton WL, Fuller DG, Vaiser A, Snider WB, Fish GE, Spencer R, Birch DG. Vitrectomy in eyes at risk for macular hole formation. Ophthalmology 1990; 97: 843–847.
  • Margherio RR, Trese MT, Margherio AR, Cartright K. Surgical management of vitreomacular traction syndromes. Ophthalmology 1989; 96: 1437–1445.
  • Billi B, Lesnoni G, Giuliano M, Rossi T, Stirpe M. Post‐traumatic macular break associated to congenital optic disc pit and pre‐existing sensory macular detachment. Int Ophthalmol 1996; 20: 269–272.
  • Joko T, Kusaka S. Tangential vitreous traction observed in optic disc pit maculopathy without apparent serous detachment. Ophthalmic Surg Lasers 1998; 29: 677–679.
  • Postel EA, Pulido JS, Mcnamara JA, Johnson MW. The etiology and treatment of macular detachment associated with optic nerve pits and related anomalies. Trans Am Ophthalmol Soc 1998; 96: 73–88.
  • Gass JDM. Stereoscopic Atlas of Macular Diseases: Diagnosis and Treatment, 4th ed. Vol II. St Louis : CV Mosby; 1996. 976–984.
  • Rutledge BK, Puliafito, CA, Duker, JS, Hee, MR, Cox MS. Optical coherence tomography of macular lesions associated with optic nerve head pits. Ophthalmology 1996; 103: 1047–1053.
  • Lincoff H, Lopez R, Kreissig I, Yahhuzzi L, Cox M, Burton T. Retinoschisis associated with optic nerve pits. Arch Ophthalmol 1988; 106: 61–67.
  • Theodossiadis GP, Ladas ID, Panagiotidis DN, Kollia AC, Voudouri AN, Theodossiadis PG. Fluorescein and indocyanine green angiographic findings in congenital optic disk pit associated with macular detachment. Retina 1999; 19: 6–11.
  • Hope‐ross MW. ICG dye: physical and pharmacologic properties. In: Yannuzzi LA, Flower RW, Slakter, JS, eds. Indocyanine Green Angiography. St Louis , MO : CV Mosby; 1997. p 46.
  • Reichel E, Puliafito CA. Atlas of Indocyanine Green Angiography. New York : Isaku‐Shoin; 1996. p 3.
  • Gass JDM. Stereoscopic Atlas of Macular Diseases: Diagnosis and Treatment, 3rd ed. St Louis : CV Mosby; 1987: p 732.
  • Morales MBJ., Teus GMA, Perez SP, Bermudez UL, Arranz ME. Congenital optic nerve pit associated with foveolar retinoschisis. Arch Soc Esp Ofialmol 2001; 76: 327–330.
  • Gass JDM. Stereoscopic Atlas of Macular Diseases: Diagnosis and Treatment, 3rd ed. St Louis : CV Mosby; 1987: p 728.
  • Kranenburg EW. Crater‐like holes in the optic disk and central serous retinopathy. Arch Ophthalmol 1960; 64: 912–924.
  • Gass JDM. Serous detachment of the macula secondary to optic disk pits. Am J Ophthalmol 1969; 67: 821–841.
  • Ferry AP. Macular detachment associated with congenital pit of the optic nerve head. Arch Ophthalmol 1963; 70: 106–117.
  • Duker, JS, Brown, GC. Vascular anomalies of the fundus. In: Tasman W, Jaeger, EA, eds. Duane's Clinical Opthalmology. Philadelphia : Lippincott; 1993. Vol 3, ch 23.
  • Chen MS, Tsai WF. Congenital optic pits and central serous chorioretinopathy. Aust NZ J Ophthalmol 1997; 25: 165–166.
  • Schatz H., Mcdonald R. Treatment of sensory retinal detachment associated with optic nerve pit or coloboma. Ophthalmology 1988; 95: 178–186.
  • Brown GC, Shields JA, Goldberg RE. Congenital pits of the optic nerve head: clinical studies in humans. Ophthalmology 1980; 87: 51–65.
  • Brockhurst RJ. Optic pits and posterior retinal detachment. Trans Am Ophthalmol Soc 1975; 73: 264–291.
  • Theodossiadis GP, Panopoulos M, Kollia AK, Georgopoulos G. Long‐term study of patients with congenital pits of the optic nerve and persistent macular detachment. Acta Ophthalmol Scand 1992; 70: 495–505.
  • Sugar HS. Congenital pits in the optic disk and acquired macular pathology. Am J Ophthalmol 1962; 53: 307–311.
  • Sugar HS. An explanation for the acquired macular pathology associated with congenital pits of the optic disk. Am J Ophthalmol 1964; 57: 833–835.
  • Sugar HS. Congenital pits of the optic disk and their equivalents (congenital coloboma and coloboma‐like excavations) associated with submacular fluid. Am J Ophthalmol 1967; 63: 298–307.
  • Lincoff H., Yannuzzi L., Singerman L., Kreissig I., Fisher Y. Improvement in visual function after displacement of the retinal evaluations emanating from optic pits. Arch Ophthalmol 1993; 111: 1071–1079.
  • Lincoff H, Schiff W, Krivoy D, Ritch R. Optic coherence tomography of optic disk pit maculopathy. Am J Ophthalmol 1996; 122: 264–266.
  • Gordon R, Chatfield RK. Pits in the optic disc associated with macular degeneration. Br J Ophthalmol 1969; 53: 481–489.
  • Rogenbogen L, Stein R, Lazar M. Macular and juxtapapillary serous retinal detachment associated with pit of optic disk. Ophthalomologica 1964; 148: 247–251.
  • Brown GC, Shields JA, Patty BE, Goldberg RE. Congenital pits of the optic nerve head. I. Experimental studies in collie dogs. Arch Ophthalmol 1979; 97: 134–134.
  • Bonet M. Serous macular detachment associated with optic nerve pits. Graefes Arch Clin Exp Ophthalmol 1991; 229: 526–532.
  • Akiba J., Kakehashi A., Hikichi T., Trempe CL. Vitreous findings in cases of optic nerve pits and serous macular detachment. Am J Ophthalmol 1993; 116: 38–41.
  • Kalina RE, Conrad WC. Intrathecal fluorescein for serous macular detachment [letter]. Arch Ophthalmol 1976; 94: 1421.
  • George ND, Yates JR, Moore AT. X linked retinoschisis. Br J Ophthalmol 1995; 79: 697–702.
  • Ikaheimo K, Tuppurainen K, Mantyjarvi M. Clinical features of Godmann‐Favre syndrome. Acta Ophthalmol Scand 1999; 77: 459–461.
  • Myers JP, Di Bisceglie AM, Mann ES. Cryoglobulinemia associated with Purtscher‐like retinopathy. Am J Ophthalmol 2001; 131: 802–804.
  • Conrad R, Bodeewes I, Schilling G, Geiser F, Imblerowicz K, Liedtke R. Central serous chorioretinopathy and stress. Ophthalmologe 2000; 97: 527–531.
  • Marmor MF. New hypothesis on the pathogenesis and treatment of serous retinal detachment. Graefes Arch Clin Exp Ophthalmol 1988; 226: 548–552.
  • Prunte C, Flammer J. Disturbances of the choroidal microcirculation in patients with central serous chorioretinopathy. Klin Monatsbl Augenheilkd 1966; 208: 337–339.
  • Piccolino FC. Central serous chorioretinopathy: some considerations on the pathogenesis. Ophthalmologica 1981; 182: 204–210.
  • Spitznas M. Pathogenesis of central serous retinopathy: a new working hypothesis. Graefes Arch Clin Exp Ophthalmol 1986; 224: 321–324.
  • Bresnick GH. Diabetic maculopathy. A critical review highlighting diffuse macular edema. Ophthalmology 1983; 90: 1301–1317.
  • Negi A, Marmor MF. Healing of photocoagulation lesions affects the rate of sub‐retinal fluid resorption. Ophthalmology 1984; 91: 1678–1683.
  • Liu, R, Flammer, J, Haefliger, IO. Isoproterenol, forskolin, and camp‐induced nitric oxide production in pig ciliary processes. Invest Ophthalmol Vis Sci 1999; 40: 1833–1837.
  • Liu, R, Flammer, J, Luscher, TF, Haefliger IO. β‐adrenergic agonist‐induced nitrite production in isolated pig ciliary processes. Graefes Arch Clin Exp Ophthalmol 1998; 236: 613–616.
  • Liu R, Wu, R, Flammer, J, Haefliger, IO. Inhibition by brimonidine of forskolin‐induced nitrite production in isolated pig ciliary processes. Invest Ophthalmol Vis Sci 2002; 43: 2727–2731.
  • Fleischerhauer J, Bény JL, Flammer J, Haefliger IO. NO/cGMP pathway activation and membrane potential depolarization in pig ciliary epithelium. Invest Ophthalmol Vis Sci 2000; 41: 1759–1763.
  • Duszyk M, Radomski MW. The role of nitric oxide in the regulation of ion channels in airway epithelium: implications for diseases of the lung. Free Radic Res 2000; 33: 449–459.
  • Ortiz PA., Garvin JL. NO Inhibits NaCl absorption by rat thick ascending limb through activation of cGMP‐stimulated phosphodiesterase. Hypertension 2001; 37: 467–471.
  • Stoner MC, Scherr AM, Lee JA, Wolfe LG, Kellum JM. Nitric oxide is a neurotransmitter in chloride secretory response to serotonin in rat colon. Surgery 2000; 128: 240–245.
  • Lomniczi A, Suburo AM, Elverdin JC, Mastronardi CA, Diaz S, Rettori V, Mccann SM. Role of nitric oxide in salivary secretion. Neuroimmunomodulation 1998; 5: 226–223.
  • Ellis DZ, Nafhanson JA, Sweadner KJ. Carbachol inhibits Na(+)‐K(+)‐ATPase activity in choroids plexus via stimulation of the NO/cGMP pathway. Am J Physiol 2000; 279: C1685–C1693.
  • Miller S, Farber D. Cyclic AMP modulation of ion transport across frog retinal pigment epithelium. Measurements in the short‐circuit state. J Gen Physiol 1984; 83: 853–874.
  • Ogidigben M, Chu TC, Potter DE. Alpha‐2 adrenoceptor mediated changes in acqueous dynamics: effect of pertussis toxin. Exp Eye Res 1994; 58: 729–736.
  • Bausher LP, Horio B. Regulation of cyclic AMP production in adult human ciliary process. Exp Eye Res 1995; 60: 43–48.
  • Tsuboi S, Manabe R, Lisuka S. Aspect of electrolyte transport across isolated dog retinal pigment epithelium. Am J Physiol 1986; 250: F781–F784.
  • Frambach DA, Weiter JJ, Adler AJ. A photogrammetric method to measure fluid movement across isolated frog retinal pigment epithelium. Biophys J 1985; 47: 547–552.
  • Negi A, Kawano S, Marmor MF. Effects of intraocular pressure and other factors on sub‐retinal fluid resorption. Invest Ophthalmol Vis Sci 1987; 28: 2099–2102.

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