Retinal stretching limits peripheral visual acuity in myopia
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Larry N. Thibos | Toco Y P Chui | L. Thibos | T. Chui | H. Chan | M. Yap | Toco Y.P. Chui | Maurice K.H. Yap | Henry H.L. Chan
[1] David A Atchison,et al. Eye shape in emmetropia and myopia. , 2004, Investigative ophthalmology & visual science.
[2] Ronald B. Rabbetts,et al. Bennett and Rabbetts' clinical visual optics , 1998 .
[3] H. Cheng. Magnetic resonance imaging of the human eye in vivo. , 1991, Optometry and vision science : official publication of the American Academy of Optometry.
[4] T. Grosvenor,et al. Role of the Axial Length/Corneal Radius Ratio in Determining the Refractive State of the Eye , 1994, Optometry and vision science : official publication of the American Academy of Optometry.
[5] J. Rovamo,et al. Visual resolution, contrast sensitivity, and the cortical magnification factor , 2004, Experimental Brain Research.
[6] Xu Cheng,et al. Estimating visual quality from wavefront aberration measurements. , 2003, Journal of refractive surgery.
[7] David Williams. Aliasing in human foveal vision , 1985, Vision Research.
[8] A Bradley,et al. New methods for discriminating neural and optical losses of vision. , 1993, Optometry and vision science : official publication of the American Academy of Optometry.
[9] Margarita B Zlatkova,et al. Binocular summation for grating detection and resolution in foveal and peripheral vision , 2001, Vision Research.
[10] David A Atchison,et al. Anterior corneal and internal contributions to peripheral aberrations of human eyes. , 2004, Journal of the Optical Society of America. A, Optics, image science, and vision.
[11] Arthur Bradley,et al. The role of neural and optical factors in limiting visual resolution in myopia , 1998, Vision Research.
[12] C. Wildsoet,et al. The spatial organization of tyrosine hydroxylase-immunoreactive amacrine cells in the chicken retina and the consequences of myopia , 1993, Vision Research.
[13] Vision Research , 1961, Nature.
[14] B. Jiang,et al. Vitreous Chamber Elongation is Responsible for Myopia Development in a Young Adult , 1996, Optometry and vision science : official publication of the American Academy of Optometry.
[15] David A. Atchison,et al. Monochromatic aberrations and myopia , 1995, Vision Research.
[16] M Millodot,et al. The relationship between tonic accommodation and refractive error. , 1987, Investigative ophthalmology & visual science.
[17] T. Grosvenor,et al. Three–Year Changes in Refraction and Its Components in Youth–Onset and Early Adult–Onset Myopia , 1993, Optometry and vision science : official publication of the American Academy of Optometry.
[18] P. Rakić,et al. Cytogenesis in the monkey retina , 1991, The Journal of comparative neurology.
[19] M. Bullimore,et al. Steady-state accommodation and ocular biometry in late-onset myopia , 2004, Documenta Ophthalmologica.
[20] Stephen J. Anderson,et al. Post-receptoral undersampling in normal human peripheral vision , 1990, Vision Research.
[21] G. Meyer-Schwickerath,et al. Biometric studies of the eyeball and retinal detachment. , 1984, The British journal of ophthalmology.
[22] D. Atchison. Calculating relative retinal image sizes of eyes , 1996, Ophthalmic & physiological optics : the journal of the British College of Ophthalmic Opticians.
[23] David R. Williams,et al. Off-axis optical quality and retinal sampling in the human eye , 1996, Vision Research.
[24] R. Applegate,et al. Magnification and visual acuity in refractive surgery. , 1993, Archives of ophthalmology.
[25] A. Fimia,et al. Magnification and visual acuity in highly myopic phakic eyes corrected with an anterior chamber intraocular lens versus by other methods , 1996, Journal of cataract and refractive surgery.
[26] J. Provis,et al. Cell death and the elimination of retinal axons during development , 1988, Progress in Neurobiology.
[27] A Bradley,et al. Effects of refractive error on detection acuity and resolution acuity in peripheral vision. , 1997, Investigative ophthalmology & visual science.
[28] B. Finlay,et al. Factors controlling the dendritic arborization of retinal ganglion cells , 1996, Visual Neuroscience.
[29] A. Bradley,et al. Aliased Frequencies Enable the Discrimination of Compound Gratings in Peripheral Vision , 1997, Vision Research.
[30] A. Bradley,et al. Interaction between sub- and supra-Nyquist spatial frequencies in peripheral vision , 1997, Vision Research.
[31] K. Zadnik. The Glenn A. Fry Award Lecture (1995). Myopia development in childhood. , 1997, Optometry and vision science : official publication of the American Academy of Optometry.
[32] D. Dacey. The mosaic of midget ganglion cells in the human retina , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[33] A. Bradley,et al. Characterization of spatial aliasing and contrast sensitivity in peripheral vision , 1996, Vision Research.
[34] B. Howland,et al. A subjective method for the measurement of monochromatic aberrations of the eye. , 1977, Journal of the Optical Society of America.
[35] N Drasdo,et al. Non-linear projection of the retinal image in a wide-angle schematic eye. , 1974, The British journal of ophthalmology.
[36] D. Williams,et al. Cone spacing and the visual resolution limit. , 1987, Journal of the Optical Society of America. A, Optics and image science.
[37] L. Thibos,et al. Retinal limits to the detection and resolution of gratings. , 1987, Journal of the Optical Society of America. A, Optics and image science.
[38] L G Carney,et al. Visual performance in high myopia. , 1990, Current eye research.
[39] Adriana Fiorentini,et al. Spatial contrast sensitivity of myopic subjects , 1976, Vision Research.
[40] Larry N. Thibos,et al. MODELING OFF-AXIS VISION II: THE EFFECT OF SPATIAL FILTERING AND SAMPLING BY RETINAL NEURONS , 1995 .
[41] N J Coletta,et al. Psychophysical estimate of extrafoveal cone spacing. , 1987, Journal of the Optical Society of America. A, Optics and image science.
[42] C. Curcio,et al. Topography of ganglion cells in human retina , 1990, The Journal of comparative neurology.
[43] Ronald B. Rabbetts,et al. Clinical Visual Optics , 1984 .
[44] Habib Hamam,et al. Objective Measurement of Optical Aberrations in Myopic Eyes , 2002, Optometry and vision science : official publication of the American Academy of Optometry.
[45] A. Derrington,et al. Refraction, aliasing, and the absence of motion reversals in peripheral vision , 1995, Vision Research.
[46] A. Adams. Axial length elongation, not corneal curvature, as a basis of adult onset myopia. , 1987, American journal of optometry and physiological optics.
[47] R A Smith,et al. Aliasing in the parafovea with incoherent light. , 1987, Journal of the Optical Society of America. A, Optics and image science.
[48] M. Bullimore,et al. Visual acuity and the accuracy of the accommodative response , 2002, Ophthalmic & physiological optics : the journal of the British College of Ophthalmic Opticians.
[49] B. Barrett,et al. Grating detection and orientation discrimination in amblyopia. , 1997, Current eye research.
[50] M. Yap,et al. Is eye size related to orbit size in human subjects? , 2004, Ophthalmic & physiological optics : the journal of the British College of Ophthalmic Opticians.
[51] D. G. Green,et al. Optical and retinal factors affecting visual resolution. , 1965, The Journal of physiology.
[52] B. Woods,et al. Shape of the Myopic Eye as Seen with High-Resolution Magnetic Resonance Imaging , 1992, Optometry and vision science : official publication of the American Academy of Optometry.
[53] R. Freeman,et al. Nonoptical determinants of aniseikonia. , 1983, Investigative ophthalmology & visual science.
[54] K. Zadnik. Myopia Development in Childhood , 1997 .
[55] L. N. Thibos,et al. Vision beyond the resolution limit: Aliasing in the periphery , 1987, Vision Research.
[56] L N Thibos,et al. Acuity perimetry and the sampling theory of visual resolution. , 1998, Optometry and vision science : official publication of the American Academy of Optometry.
[57] A Bradley,et al. Subjective refraction of the peripheral field using contrast detection acuity. , 1996, Journal of the American Optometric Association.
[58] Larry N. Thibos,et al. Undersampling produces non-veridical motion perception, but not necessarily motion reversal, in peripheral vision , 1996, Vision Research.