Glaucomatous damage of the macula

Progress in Retinal and Eye Research - Tập 32 - Trang 1-21 - 2013
Donald C. Hood1,2, Ali S. Raza3,2, Carlos Gustavo V. De Moraes4,5, Jeffrey M. Liebmann4,5, Robert Ritch6,5
1Department of Ophthalmology, Columbia University, New York, NY 10027-7004, USA
2Department of Psychology, Columbia University, New York, NY 10027-7004, USA
3Department of Neurobiology and Behavior, Columbia University, New York, NY, USA
4Department of Ophthalmology, New York University, New York, NY, USA
5Einhorn Clinical Research Center, New York Eye and Ear, Infirmary, New York, NY, USA
6Department of Ophthalmology and Visual Science, New York Medical College, Valhalla, NY, USA

Tóm tắt

Từ khóa


Tài liệu tham khảo

Airaksinen, 1983, Visual field and retinal nerve fibre layer in early glaucoma after optic disc haemorrhage, Acta Ophthalmol. (Copenh.), 61, 186, 10.1111/j.1755-3768.1983.tb01412.x

Anctil, 1984, Early foveal involvement and generalized depression of the visual field in glaucoma, Arch. Ophthalmol., 102, 363, 10.1001/archopht.1984.01040030281019

Araie, 1995, Pattern of visual field defects in normal-tension and high-tension glaucoma, Curr. Opin. Ophthalmol., 6, 36, 10.1097/00055735-199504000-00007

Aulhorn, 1967, Early visual field defects in glaucoma, 151

Aulhorn, 1977, Frequency distribution in early glaucomatous visual field defects, Doc. Ophthalmol. Proc. Ser., 14, 75

Bixenman, 1982, Apparent foveal displacement in normal subjects and in cyclotropia, Ophthalmology, 89, 58, 10.1016/S0161-6420(82)34862-9

Budenz, 2007, Determinants of normal retinal nerve fiber layer thickness measured by Stratus OCT, Ophthalmology, 114, 1046, 10.1016/j.ophtha.2006.08.046

Curcio, 1990, Topography of ganglion cells in human retina, J. Comp. Neurol., 300, 5, 10.1002/cne.903000103

Curcio, 2011, Human choroidal layer thicknesses measured in macula-wide, high-resolution histologic sections, Retina, 52, 3943

Dandona, 1990, Quantitative regional structure of the normal human lamina cribrosa. A racial comparison, Arch. Ophthalmol., 108, 393, 10.1001/archopht.1990.01070050091039

de A Moura, 2012, Retinal ganglion cell and inner plexiform layer thickness in regions of severe visual field sensitivity loss in patients with glaucoma, Eye, 26, 1188, 10.1038/eye.2012.110

Drance, 1969, Some studies of the relationships of hemodynamics and ocular pressure in open-angle glaucoma, Trans. Ophthalmol. Soc. U. K., 88, 633

Drance, 1977, The visual field of low tension glaucoma and shock induced optic neuropathy, Arch. Ophthalmol., 95, 1359, 10.1001/archopht.1977.04450080069004

Drasdo, 2007, The length of Henle fibers in the human retina and a model of ganglion receptive field density in the visual field, Vis. Res., 47, 2901, 10.1016/j.visres.2007.01.007

Gabriele, 2010, Three dimensional optical coherence tomography imaging: advantages and advances, Prog. Retin. Eye Res., 29, 556, 10.1016/j.preteyeres.2010.05.005

Garway-Heath, 2000, Mapping the visual field to the optic disc in normal tension glaucoma eyes, Ophthalmology, 107, 1809, 10.1016/S0161-6420(00)00284-0

Garway-Heath, 2000, Scaling the hill of vision: the physiological relationship between light sensitivity and ganglion cell numbers, Invest. Ophthalmol. Vis. Sci., 41, 1774

Harrington, 1990

Heijl, 1984, The frequency distribution of earliest glaucomatous visual field defects documented by automated perimetry, Acta Ophthalmol., 62, 657, 10.1111/j.1755-3768.1984.tb03979.x

Henson, 1999, Diffuse loss of sensitivity in early glaucoma, Invest. Ophthalmol. Vis. Sci., 40, 3147

Hood, 2007, A framework for comparing structural and functional measures of glaucomatous damage, Prog. Retin. Eye Res., 26, 688, 10.1016/j.preteyeres.2007.08.001

Hood, 2011, Method for comparing visual field defects to local RNFL and RGC damage seen on frequency domain OCT in patients with glaucoma, Biomed. Opt. Exp., 2, 1097, 10.1364/BOE.2.001097

Hood, 2007, Structure versus function in glaucoma: an application of a linear model, Invest. Ophthalmol. Vis. Sci., 48, 3662, 10.1167/iovs.06-1401

Hood, 2008, Retinal nerve fiber structure versus visual field function in patients with ischemic optic neuropathy: a test of a linear model, Ophthalmology, 115, 90, 10.1016/j.ophtha.2007.06.001

Hood, 2008, Blood vessel contributions to retinal nerve fiber layer thickness profiles measured with optical coherence tomography, J. Glaucoma, 17, 519, 10.1097/IJG.0b013e3181629a02

Hood, 2009, A test of a linear model of glaucomatous structure–function loss reveals sources of variability in retinal nerve fiber and visual field measurements, Invest. Ophthalmol. Vis. Sci., 127, 875

Hood, 2011, Reliability of a computer-aided manual procedure for segmenting optical coherence tomography scans, Optom. Vis. Sci., 88, 113, 10.1097/OPX.0b013e3181fc3625

Hood, 2011, Initial arcuate defects within the central 10 degrees in glaucoma, Invest. Ophthalmol. Vis. Sci., 52, 940, 10.1167/tvst.1.1.3

Hood, 2012, The nature of macular damage in glaucoma as revealed by averaging optical coherence tomography data, Trans. Vis. Sci. Tech., 1, 1, 10.1167/tvst.1.1.3

Jansonius, 2009, A mathematical description of nerve fiber bundle trajectories and their variability in the human retina, Vis. Res., 49, 2157, 10.1016/j.visres.2009.04.029

Keltner, 2003, Classification of visual field abnormalities in the ocular hypertension treatment study, Arch. Ophthalmol., 121, 643, 10.1001/archopht.121.5.643

Lan, 2008, Characteristics of disc hemorrhage in primary angle-closure glaucoma, Ophthalmology, 115, 1328, 10.1016/j.ophtha.2007.10.041

Langerhorst, 1997, Measurements for description of very early glaucomatous field defects, 67

Lefèvre, 2007, Study of the optic nerve head-fovea angle with retinophotography in healthy patients, J. Fr. Ophthalmol., 30, 598, 10.1016/S0181-5512(07)89664-1

Leite, 2012, Structure–function relationships using the Cirrus spectral domain optical coherence tomograph and standard automated perimetry, J. Glaucoma, 21, 49, 10.1097/IJG.0b013e31822af27a

Lewis, 1984, A comparison of visual field loss in primary open-angle glaucoma and the secondary glaucomas, Ophthalmologica, 189, 41, 10.1159/000309383

Morgan, 2002, Retinal ganglion cell shrinkage in glaucoma, J. Glaucoma, 11, 365, 10.1097/00061198-200208000-00015

Mwanza, 2011, Cirrus OCT Normative Database Study Group. Profile and predictors of normal ganglion cell-inner plexiform layer thickness measured with frequency-domain optical coherence tomography, Invest. Ophthalmol. Vis. Sci., 52, 7872, 10.1167/iovs.11-7896

Nguyen, 2012

Nicholas, 1980, Location of early glaucomatous visual field defects, Can. J. Ophthalmol., 15, 131

Ooto, 2011, Effects of age, sex, and axial length on the three-dimensional profile of normal macular layer structures, Invest. Ophthalmol. Vis. Sci., 52, 8769, 10.1167/iovs.11-8388

Parikh, 2007, Normal age-related decay of retinal nerve fiber layer thickness, Ophthalmology, 114, 921, 10.1016/j.ophtha.2007.01.023

Park, 2011, Initial parafoveal versus peripheral scotomas in glaucoma: risk factors and visual field characteristics, Ophthalmology, 118, 1782, 10.1016/j.ophtha.2011.02.013

Patel, 2012, Agreement between retinal nerve fiber layer measures from Spectralis and Cirrus spectral domain OCT, Optom. Vis. Sci., 89, 652, 10.1097/OPX.0b013e318238c34e

Plant, 1990, The anatomical basis of the caecocentral scotoma: new observations and a review, Brain, 113, 1441, 10.1093/brain/113.5.1441

Poinoosawmy, 1997, Variation of nerve fibre layer thickness measurements with age and ethnicity by scanning laser polarimetry, Br. J. Ophthalmol., 81, 350, 10.1136/bjo.81.5.350

Quigley, 1981, Regional differences in the structure of the lamina cribrosa and their relation to glaucomatous optic nerve damage, Arch. Ophthalmol., 99, 137, 10.1001/archopht.1981.03930010139020

Rao, 2012, Retinal nerve fiber layer and macular inner retina measurements by spectral domain optical coherence tomograph in Indian eyes with early glaucoma, Eye, 26, 133, 10.1038/eye.2011.277

Raza, 2011, Retinal ganglion cell layer thickness and local visual field sensitivity in glaucoma, Arch. Ophthalmol., 129, 1529, 10.1001/archophthalmol.2011.352

Reis, 2012, Optic disc margin anatomy in patients with glaucoma and normal controls with spectral domain optical coherence tomography, Ophthalmology, 119, 738, 10.1016/j.ophtha.2011.09.054

Rohrschneider, 2004, Determination of the location of the fovea on the fundus, Invest. Ophthalmol. Vis. Sci., 45, 3257, 10.1167/iovs.03-1157

Schiefer, 2003, Increased detection rate of glaucomatous visual field damage with locally condensed grids: a comparison between fundus-oriented perimetry and conventional visual field examination, Arch. Ophthalmol., 121, 458, 10.1001/archopht.121.4.458

Schiefer, 2010, Spatial pattern of glaucomatous visual field loss obtained with regionally condensed stimulus arrangements, Invest. Ophthalmol. Vis. Sci., 51, 5685, 10.1167/iovs.09-5067

Schuman, 1996, Reproducibility of nerve fiber layer thickness measurements using optical coherence tomography, Ophthalmology, 103, 1889, 10.1016/S0161-6420(96)30410-7

Stamper, 1984, The effect of glaucoma on central visual function, Trans. Am. Ophthalmol. Soc., 82, 792

Su, D., Park, S.C., Simonson, J.L., Liebmann, J.M., Ritch, R. Progression pattern of initial parafoveal scotomas in glaucoma. Ophthalmology, in press.

Swanson, 2004, Perimetric defects and ganglion cell damage: interpreting linear relations using a two-stage neural model, Invest. Ophthalmol. Vis. Sci., 45, 466, 10.1167/iovs.03-0374

Tan, 2009, Detection of macular ganglion cell loss in glaucoma by Fourier-domain optical coherence tomography, Ophthalmology, 116, 2305, 10.1016/j.ophtha.2009.05.025

Timberlake, 2005, Retinal location of the preferred retinal locus relative to the fovea in scanning laser ophthalmoscope images, Optom. Vis. Sci., 82, 177, 10.1097/01.OPX.0000156311.49058.C8

Traynis, 2012

Wall, 2009, Use of a continuous probability scale to display visual field damage, Arch. Ophthalmol., 127, 749, 10.1001/archophthalmol.2009.111

Wang, 2009, Measurement of local retinal ganglion cell layer thickness in patients with glaucoma using frequency-domain optical coherence tomography, Arch. Ophthalmol., 127, 875, 10.1001/archophthalmol.2009.145

Weber, 1989, The visual field in advanced glaucoma, Int. Ophthalmol., 13, 47, 10.1007/BF02028637

Xin, 2011, Hypodense regions (“holes”) in the retinal nerve fiber layer in frequency-domain OCT scans of glaucoma patients and suspects, Invest. Ophthalmol. Vis. Sci., 52, 7180, 10.1167/iovs.11-7716

Yang, 2010, Automated layer segmentation of macular OCT images using dual-scale gradient information, Opt. Exp., 18, 21293, 10.1364/OE.18.021293

Zhang, 2011, Deriving visual field loss based upon OCT of inner retinal thicknesses of the macula, Biomed. Opt. Exp., 2, 1734, 10.1364/BOE.2.001734