Published in Invest Ophthalmol Vis Sci on May 07, 2013
Diagnostic Innovations in Glaucoma Study (DIGS) | NCT00221897
African Descent and Glaucoma Evaluation Study (ADAGES) | NCT00221923
Relationship between ganglion cell layer thickness and estimated retinal ganglion cell counts in the glaucomatous macula. Ophthalmology (2014) 0.86
Evaluation of a Method for Estimating Retinal Ganglion Cell Counts Using Visual Fields and Optical Coherence Tomography. Invest Ophthalmol Vis Sci (2015) 0.80
Clinical features and glaucoma according to optic disc size in a South Korean population: the Namil study. Jpn J Ophthalmol (2014) 0.77
Assessing assumptions of a combined structure-function index. Ophthalmic Physiol Opt (2015) 0.76
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Human optic nerve fiber count and optic disc size. Invest Ophthalmol Vis Sci (1992) 2.94
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Intraobserver and interobserver agreement in measurement of optic disc characteristics. Ophthalmology (1988) 2.54
Linking structure and function in glaucoma. Prog Retin Eye Res (2010) 2.43
Comparison of retinal nerve fiber layer measurements using time domain and spectral domain optical coherent tomography. Ophthalmology (2009) 2.41
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Validation of a predictive model to estimate the risk of conversion from ocular hypertension to glaucoma. Arch Ophthalmol (2005) 2.10
African Descent and Glaucoma Evaluation Study (ADAGES): III. Ancestry differences in visual function in healthy eyes. Arch Ophthalmol (2010) 1.89
The structure and function relationship in glaucoma: implications for detection of progression and measurement of rates of change. Invest Ophthalmol Vis Sci (2012) 1.83
Morphometry of the human lamina cribrosa surface. Invest Ophthalmol Vis Sci (1991) 1.81
Comparison of retinal nerve fiber layer and optic disc imaging for diagnosing glaucoma in patients suspected of having the disease. Ophthalmology (2008) 1.71
The normal human optic nerve. Axon count and axon diameter distribution. Ophthalmology (1989) 1.69
Age-related losses of retinal ganglion cells and axons. Invest Ophthalmol Vis Sci (2008) 1.55
Genetic determination of cup/disc ratio of the optic nerve. Arch Ophthalmol (1967) 1.50
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Rates of neuroretinal rim and peripapillary atrophy area change: a comparative study of glaucoma patients and normal controls. Ophthalmology (2009) 1.41
Estimating the rate of retinal ganglion cell loss in glaucoma. Am J Ophthalmol (2012) 1.41
Imaging of the optic disc and retinal nerve fiber layer: the effects of age, optic disc area, refractive error, and gender. J Opt Soc Am A Opt Image Sci Vis (2002) 1.41
Quantitative evaluation of the optic nerve head in early glaucoma. Br J Ophthalmol (1998) 1.38
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Agreement among glaucoma specialists in assessing progressive disc changes from photographs in open-angle glaucoma patients. Am J Ophthalmol (2008) 1.37
Reversal of optic disc cupping after glaucoma surgery analyzed with a scanning laser tomograph. Ophthalmology (1999) 1.35
Systems for staging the amount of optic nerve damage in glaucoma: a critical review and new material. Surv Ophthalmol (2006) 1.25
Retinal photoreceptor count, retinal surface area, and optic disc size in normal human eyes. Ophthalmology (1994) 1.23
A combined index of structure and function for staging glaucomatous damage. Arch Ophthalmol (2012) 1.19
Laser scanning tomography of optic discs of the normal Japanese population in a population-based setting. Ophthalmology (2008) 1.15
Modeling the effects of aging on retinal ganglion cell density and nerve fiber layer thickness. Graefes Arch Clin Exp Ophthalmol (2007) 1.07
Interobserver and intraobserver variability in the detection of glaucomatous progression of the optic disc. J Glaucoma (1996) 1.06
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Observer variability in optic disc assessment: implications for glaucoma shared care. Ophthalmic Physiol Opt (2000) 1.04
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Agreement between stereophotographic and confocal scanning laser ophthalmoscopy measurements of cup/disc ratio: effect on a predictive model for glaucoma development. J Glaucoma (2007) 0.93
Influence of refractive error on optic disc topographic parameters: the singapore malay eye study. Am J Ophthalmol (2011) 0.84
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Disc photography and Heidelberg retinal tomography documentation of reversal of cupping following trabeculectomy. Graefes Arch Clin Exp Ophthalmol (2010) 0.79
Evaluation of retinal nerve fiber layer, optic nerve head, and macular thickness measurements for glaucoma detection using optical coherence tomography. Am J Ophthalmol (2005) 4.83
Comparison of the GDx VCC scanning laser polarimeter, HRT II confocal scanning laser ophthalmoscope, and stratus OCT optical coherence tomograph for the detection of glaucoma. Arch Ophthalmol (2004) 4.01
Evolving guidelines for intravitreous injections. Retina (2004) 3.39
Effect of improper scan alignment on retinal nerve fiber layer thickness measurements using Stratus optical coherence tomograph. J Glaucoma (2008) 3.18
Combining structural and functional testing for detection of glaucoma. Ophthalmology (2006) 2.97
Retinal nerve fiber layer imaging with spectral-domain optical coherence tomography: a variability and diagnostic performance study. Ophthalmology (2009) 2.96
A randomized trial of brimonidine versus timolol in preserving visual function: results from the Low-Pressure Glaucoma Treatment Study. Am J Ophthalmol (2011) 2.88
Use of progressive glaucomatous optic disk change as the reference standard for evaluation of diagnostic tests in glaucoma. Am J Ophthalmol (2005) 2.84
Optic disc change with incipient myopia of childhood. Ophthalmology (2011) 2.77
Variation of 24-hour intraocular pressure in healthy individuals: right eye versus left eye. Ophthalmology (2005) 2.72
Glaucomatous damage of the macula. Prog Retin Eye Res (2012) 2.70
Continuous 24-hour monitoring of intraocular pressure patterns with a contact lens sensor: safety, tolerability, and reproducibility in patients with glaucoma. Arch Ophthalmol (2012) 2.70
Prevalence of ocular surface disease in glaucoma patients. J Glaucoma (2008) 2.65
The African Descent and Glaucoma Evaluation Study (ADAGES): design and baseline data. Arch Ophthalmol (2009) 2.59
Prediction of functional loss in glaucoma from progressive optic disc damage. Arch Ophthalmol (2009) 2.53
Orbital cerebrospinal fluid space in glaucoma: the Beijing intracranial and intraocular pressure (iCOP) study. Ophthalmology (2012) 2.44
Association between rates of binocular visual field loss and vision-related quality of life in patients with glaucoma. JAMA Ophthalmol (2013) 2.37
Comparison of macular thickness measurements between time domain and spectral domain optical coherence tomography. Invest Ophthalmol Vis Sci (2008) 2.37
Reproducibility of RTVue retinal nerve fiber layer thickness and optic disc measurements and agreement with Stratus optical coherence tomography measurements. Am J Ophthalmol (2009) 2.33
Corneal hysteresis as a risk factor for glaucoma progression: a prospective longitudinal study. Ophthalmology (2013) 2.29
Cerebrospinal fluid exchange in the optic nerve in normal-tension glaucoma. Br J Ophthalmol (2011) 2.23
Five rules to evaluate the optic disc and retinal nerve fiber layer for glaucoma. Optometry (2005) 2.23
Blood vessel contributions to retinal nerve fiber layer thickness profiles measured with optical coherence tomography. J Glaucoma (2008) 2.19
Measurement of local retinal ganglion cell layer thickness in patients with glaucoma using frequency-domain optical coherence tomography. Arch Ophthalmol (2009) 2.18
Structure-function relationships using confocal scanning laser ophthalmoscopy, optical coherence tomography, and scanning laser polarimetry. Invest Ophthalmol Vis Sci (2006) 2.17
Individualized compensation of anterior segment birefringence during scanning laser polarimetry. Invest Ophthalmol Vis Sci (2002) 2.13
Validation of a predictive model to estimate the risk of conversion from ocular hypertension to glaucoma. Arch Ophthalmol (2005) 2.10
Tracking retinal microgliosis in models of retinal ganglion cell damage. Invest Ophthalmol Vis Sci (2012) 2.10
Differences in visual function and optic nerve structure between healthy eyes of blacks and whites. Arch Ophthalmol (2005) 2.09
Frequency doubling technology perimetry abnormalities as predictors of glaucomatous visual field loss. Am J Ophthalmol (2004) 2.06
Discrimination between glaucomatous and nonglaucomatous eyes using quantitative imaging devices and subjective optic nerve head assessment. Invest Ophthalmol Vis Sci (2006) 2.05
Common variants at 9p21 and 8q22 are associated with increased susceptibility to optic nerve degeneration in glaucoma. PLoS Genet (2012) 2.00
Effects of retinal ganglion cell loss on magno-, parvo-, koniocellular pathways in the lateral geniculate nucleus and visual cortex in glaucoma. Prog Retin Eye Res (2003) 1.98
Enhanced depth imaging optical coherence tomography of deep optic nerve complex structures in glaucoma. Ophthalmology (2011) 1.98
Twenty-four-hour intraocular pressure pattern associated with early glaucomatous changes. Invest Ophthalmol Vis Sci (2003) 1.97
Detection of glaucoma progression with stratus OCT retinal nerve fiber layer, optic nerve head, and macular thickness measurements. Invest Ophthalmol Vis Sci (2009) 1.97
Effect of signal strength and improper alignment on the variability of stratus optical coherence tomography retinal nerve fiber layer thickness measurements. Am J Ophthalmol (2009) 1.96
African Descent and Glaucoma Evaluation Study (ADAGES): III. Ancestry differences in visual function in healthy eyes. Arch Ophthalmol (2010) 1.89
Initial arcuate defects within the central 10 degrees in glaucoma. Invest Ophthalmol Vis Sci (2011) 1.89
Retinal ganglion cell count estimates associated with early development of visual field defects in glaucoma. Ophthalmology (2012) 1.86
Evaluation of retinal nerve fiber layer progression in glaucoma: a study on optical coherence tomography guided progression analysis. Invest Ophthalmol Vis Sci (2009) 1.86
Retinal ganglion cell layer thickness and local visual field sensitivity in glaucoma. Arch Ophthalmol (2011) 1.85
Influence of disease severity and optic disc size on the diagnostic performance of imaging instruments in glaucoma. Invest Ophthalmol Vis Sci (2006) 1.84
The structure and function relationship in glaucoma: implications for detection of progression and measurement of rates of change. Invest Ophthalmol Vis Sci (2012) 1.83
Baseline topographic optic disc measurements are associated with the development of primary open-angle glaucoma: the Confocal Scanning Laser Ophthalmoscopy Ancillary Study to the Ocular Hypertension Treatment Study. Arch Ophthalmol (2005) 1.80
Optical coherence tomography of the retina and optic nerve - a review. Clin Experiment Ophthalmol (2009) 1.80
Detection of progressive retinal nerve fiber layer loss in glaucoma using scanning laser polarimetry with variable corneal compensation. Invest Ophthalmol Vis Sci (2008) 1.78
Recharacterization of the RGC-5 retinal ganglion cell line. Invest Ophthalmol Vis Sci (2009) 1.74
Aqueous humor dynamics in mice. Invest Ophthalmol Vis Sci (2003) 1.73
Diurnal intraocular pressure patterns are not repeatable in the short term in healthy individuals. Ophthalmology (2010) 1.72
Evaluation of the influence of corneal biomechanical properties on intraocular pressure measurements using the ocular response analyzer. J Glaucoma (2006) 1.72
Optic disc morphology in open-angle glaucoma compared with anterior ischemic optic neuropathies. Invest Ophthalmol Vis Sci (2009) 1.71
Comparison of retinal nerve fiber layer and optic disc imaging for diagnosing glaucoma in patients suspected of having the disease. Ophthalmology (2008) 1.71
Primary open-angle glaucoma in blacks: a review. Surv Ophthalmol (2003) 1.70
Comparison of different spectral domain optical coherence tomography scanning areas for glaucoma diagnosis. Ophthalmology (2010) 1.68