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Original Research

Measurement of the hypotenuse of the vertical optic nerve head cup with spectral-domain optical coherence tomography for the structural diagnosis of glaucoma

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Pages 215-225 | Published online: 23 Jan 2018

References

  • HarwerthRSCarter-DawsonLSmithELBarnesGHoltWFCrawfordMLNeural losses correlated with visual losses in clinical perimetryInvest Ophthalmol Vis Sci20044593152316015326134
  • GardinerSKJohnsonCACioffiGAEvaluation of the structure–function relationship in glaucomaInvest Ophthalmol Vis Sci200546103712371716186353
  • AndersonRSThe psychophysics of glaucoma: improving the structure/function relationshipProg Retin Eye Res2006251799716081311
  • SchumanJSHeeMRPuliafitoCAQuantification of nerve fiber layer thickness in normal and glaucomatous eyes using optical coherence tomographyArch Ophthalmol199511355865967748128
  • BaumalCRClinical applications of optical coherence tomographyCurr Opin Ophthalmol199910318218810537777
  • BudenzDLAndersonDRVarmaRDeterminants of normal retinal nerve fiber layer thickness measured by Stratus OCTOphthalmology200711461046105217210181
  • LeungCKCheungCYWeinrebRNRetinal nerve fiber layer imaging with spectral-domain optical coherence tomography: a variability and diagnostic performance studyOphthalmology200911671257126319464061
  • AsraniSRosdahlJAAllinghamRRNovel software strategy for glaucoma diagnosis: asymmetry analysis of retinal thicknessArch Ophthalmol201112991205121121911669
  • SchumanJSSpectral domain optical coherence tomography for glaucoma (an AOS thesis)Trans Am Ophthalmol Soc200810642645819277249
  • LeungCKCheungCYWeinrebRNEvaluation of retinal nerve fiber layer progression in glaucoma: a study on optical coherence tomography guided progression analysisInvest Ophthalmol Vis Sci201051121722219684001
  • BusselIIWollsteinGSchumanJSOCT for glaucoma diagnosis, screening and detection of glaucoma progressionBr J Ophthalmol201498Suppl 21519
  • WojtkowskiMSrinivasanVFujimotoJGThree-dimensional retinal imaging with high-speed ultrahigh-resolution optical coherence tomographyOphthalmology2005112101734174616140383
  • WojtkowskiMSrinivasanVKoTFujimotoJKowalczykADukerJUltrahigh-resolution, high-speed, Fourier domain optical coherence tomography and methods for dispersion compensationOpt Express200412112404242219475077
  • LeungCKYeCWeinrebRNRetinal nerve fiber layer imaging with spectral-domain optical coherence tomography: a study on diagnostic agreement with Heidelberg Retinal TomographOphthalmology2010117226727419969364
  • SanderBLarsenMThraneLHougaardJLJorgensenTMEnhanced optical coherence tomography imaging by multiple scan averagingBr J Ophthalmol200589220721215665354
  • SpaideRFKoizumiHPozzoniMCEnhanced depth imaging spectral-domain optical coherence tomographyAm J Ophthalmol2008146449650018639219
  • ParkSCDe MoraesCGTengCCTelloCLiebmannJMRitchREnhanced depth imaging optical coherence tomography of deep optic nerve complex structures in glaucomaOphthalmology201211913921978593
  • LeeEJKimTWWeinrebRNParkKHKimSHKimDMVisualization of the lamina cribrosa using enhanced depth imaging spectral-domain optical coherence tomographyAm J Ophthalmol20111521879521570046
  • PotsaidBBaumannBHuangDUltrahigh speed 1050 nm swept source/Fourier domain OCT retinal and anterior segment imaging at 100,000 to 400,000 axial scans per secondOpt Express20101819200292004820940894
  • StewartWCKolkerAESharpeEDFactors associated with long-term progression or stability in primary open-angle glaucomaAm J Ophthalmol2000130327427911020404
  • JonasJBXuLOptic disk hemorrhages in glaucomaAm J Ophthalmol19941181188023857
  • MartusPStrouxABuddeWMMardinCYKorthMJonasJBPredictive factors for progressive optic nerve damage in various types of chronic open-angle glaucomaAm J Ophthalmol20051396999100915953429
  • HarizmanNOliveiraCChiangAThe ISNT rule and differentiation of normal from glaucomatous eyesArch Ophthalmol2006124111579158317102005
  • SchumanJSWollsteinGFarraTComparison of optic nerve head measurements obtained by optical coherence tomography and confocal scanning laser ophthalmoscopyAm J Ophthalmol2003135450451212654368
  • GardinerSKRenRYangHFortuneBBurgoyneCFDemirelSA method to estimate the amount of neuroretinal rim tissue in glaucoma: comparison with current methods for measuring rim areaAm J Ophthalmol2014157354054924239775
  • ChauhanBCBurgoyneCFFrom clinical examination of the optic disc to clinical assessment of the optic nerve head: a paradigm changeAm J Ophthalmol2013156221822723768651
  • ParkSCBrummJFurlanettoRLLamina cribrosa depth in different stages of glaucomaInvest Ophthalmol Vis Sci20155632059206425722212
  • FurlanettoRLParkSCDamleUJPosterior displacement of the lamina cribrosa in glaucoma: in vivo interindividual and intereye comparisonsInvest Ophthalmol Vis Sci20135474836484223778876
  • RenRYangHGardinerSKAnterior lamina cribrosa surface depth, age, and visual field sensitivity in the Portland Progression ProjectInvest Ophthalmol Vis Sci20145531531153924474264
  • BellezzaAJRintalanCJThompsonHWDownsJCHartRTBurgoyneCFDeformation of the lamina cribrosa and anterior scleral canal wall in early experimental glaucomaInvest Ophthalmol Vis Sci200344262363712556392
  • YangHThompsonHRobertsMDSigalIADownsJCBurgoyneCFDeformation of the early glaucomatous monkey optic nerve head connective tissue after acute IOP elevation in 3-D histomorphometric reconstructionsInvest Ophthalmol Vis Sci201152134536320702834
  • QuigleyHAHohmanRMAddicksEMMassofRWGreenWRMorphologic changes in the lamina cribrosa correlated with neural loss in open-angle glaucomaAm J Ophthalmol19839556736916846459
  • YangHDownsJCSigalIARobertsMDThompsonHBurgoyneCFDeformation of the normal monkey optic nerve head connective tissue after acute IOP elevation within 3-D histomorphometric reconstructionsInvest Ophthalmol Vis Sci200950125785579919628739
  • YanDBColomaFMMetheetrairutATropeGEHeathcoteJGEthierCRDeformation of the lamina cribrosa by elevated intraocular pressureBr J Ophthalmol19947886436487918293
  • JungKIJeonSParkCKLamina cribrosa depth is associated with the cup-to-disc ratio in eyes with large optic disc cupping and cup-to-disc ratio asymmetryJ Glaucoma2016255e536e54526859358
  • YangHDownsJCBurgoyneCFPhysiologic intereye differences in monkey optic nerve head architecture and their relation to changes in early experimental glaucomaInvest Ophthalmol Vis Sci200950122423418775866
  • BurgoyneCFDownsJCBellezzaAJSuhJKHartRTThe optic nerve head as a biomechanical structure: a new paradigm for understanding the role of IOP-related stress and strain in the pathophysiology of glaucomatous optic nerve head damageProg Retin Eye Res2005241397315555526
  • BurgoyneCFDownsJCPremise and prediction – how optic nerve head biomechanics underlies the susceptibility and clinical behavior of the aged optic nerve headJ Glaucoma200817431832818552618
  • WollsteinGGarway-HeathDFHitchingsRAIdentification of early glaucoma cases with the scanning laser ophthalmoscopeOphthalmology19981058155715639709774
  • GordonMOBeiserJABrandtJDThe Ocular Hypertension Treatment Study: baseline factors that predict the onset of primary open-angle glaucomaArch Ophthalmol2002120671472012049575
  • MedeirosFAVizzeriGZangwillLMAlencarLMSamplePAWeinrebRNComparison of retinal nerve fiber layer and optic disc imaging for diagnosing glaucoma in patients suspected of having the diseaseOphthalmology200811581340134618207246
  • LisboaRParanhosAJrWeinrebRNZangwillLMLeiteMTMedeirosFAComparison of different spectral domain OCT scanning protocols for diagnosing preperimetric glaucomaInvest Ophthalmol Vis Sci20135453417342523532529
  • Ocular Hypertension Treatment Study GroupEuropean Glaucoma Prevention Study GroupGordonMOValidated prediction model for the development of primary open-angle glaucoma in individuals with ocular hypertensionOphthalmology20071141101917095090
  • YangZTathamAJZangwillLMWeinrebRNZhangCMedeirosFADiagnostic ability of retinal nerve fiber layer imaging by swept-source optical coherence tomography in glaucomaAm J Ophthalmol2015159119320125448991