A method to characterize compensatory oculomotor strategies following simulated central vision loss
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[1] Susana T. L. Chung,et al. What does an artificial scotoma simulate , 2019 .
[2] Vanessa Harrar,et al. A nonvisual eye tracker calibration method for video-based tracking. , 2018, Journal of vision.
[3] Steven C Dakin,et al. The Auckland Optotypes: An open-access pictogram set for measuring recognition acuity. , 2018, Journal of vision.
[4] S. Wahl,et al. Transfer of an induced preferred retinal locus of fixation to everyday life visual tasks. , 2017, Journal of vision.
[5] Katharina Rifai,et al. Can positions in the visual field with high attentional capabilities be good candidates for a new preferred retinal locus? , 2017, Vision Research.
[6] E. Pilotto,et al. Microperimetry in age: related macular degeneration , 2017, Eye.
[7] Y. Trotter,et al. Rehabilitation Approaches in Macular Degeneration Patients , 2016, Front. Syst. Neurosci..
[8] Chantal Kemner,et al. An in-depth look at saccadic search in infancy. , 2016, Journal of vision.
[9] Rong Liu,et al. Integrating oculomotor and perceptual training to induce a pseudofovea: A model system for studying central vision loss , 2016, Journal of vision.
[10] Daniel R Saunders,et al. Direct measurement of the system latency of gaze-contingent displays , 2013, Behavior Research Methods.
[11] Lei Liu,et al. Adaptation to a simulated central scotoma during visual search training , 2014, Vision Research.
[12] R. Klein,et al. Global prevalence of age-related macular degeneration and disease burden projection for 2020 and 2040: a systematic review and meta-analysis. , 2014, The Lancet. Global health.
[13] Susana T. L. Chung. Cortical Reorganization after Long-Term Adaptation to Retinal Lesions in Humans , 2013, The Journal of Neuroscience.
[14] Bosco S. Tjan,et al. Rapid and Persistent Adaptability of Human Oculomotor Control in Response to Simulated Central Vision Loss , 2013, Current Biology.
[15] B. P. Klein,et al. Macular degeneration affects eye movement behavior during visual search , 2013, Front. Psychol..
[16] Mark W. Greenlee,et al. Functional and structural brain modifications induced by oculomotor training in patients with age-related macular degeneration , 2013, Front. Psychol..
[17] Eric Castet,et al. Quantifying eye stability during a fixation task: a review of definitions and methods. , 2012, Seeing and perceiving.
[18] G. Legge,et al. THE PREFERRED RETINAL LOCUS IN MACULAR DISEASE: Toward A Consensus Definition , 2011, Retina.
[19] M. Steinbach,et al. Fixation control before and after treatment for neovascular age-related macular degeneration. , 2011, Investigative ophthalmology & visual science.
[20] Eric Castet,et al. Gaze-contingent simulation of retinopathy: Some potential pitfalls and remedies , 2011, Vision Research.
[21] Daniel D. Dilks,et al. Reorganization of Visual Processing in Macular Degeneration Is Not Specific to the “Preferred Retinal Locus” , 2009, The Journal of Neuroscience.
[22] Daniel D. Dilks,et al. Reorganization of visual processing in macular degeneration: Replication and clues about the role of foveal loss , 2008, Vision Research.
[23] Michael D Crossland,et al. Preferred retinal locus development in patients with macular disease. , 2005, Ophthalmology.
[24] N. Kanwisher,et al. Reorganization of Visual Processing in Macular Degeneration , 2005, The Journal of Neuroscience.
[25] M. Crossland,et al. Evaluation of a new quantitative technique to assess the number and extent of preferred retinal loci in macular disease , 2004, Vision Research.
[26] M. Crossland,et al. Fixation stability using central and pericentral fixation targets in patients with age-related macular degeneration. , 2004, Ophthalmology.
[27] Frans W Cornelissen,et al. The Eyelink Toolbox: Eye tracking with MATLAB and the Psychophysics Toolbox , 2002, Behavior research methods, instruments, & computers : a journal of the Psychonomic Society, Inc.
[28] M. Humayun,et al. Inferior limited macular translocation for subfoveal choroidal neovascularization secondary to age-related macular degeneration: 1-year visual outcome and recurrence report. , 2002, American journal of ophthalmology.
[29] A B Safran,et al. Full text reading with a central scotoma: pseudo regressions and pseudo line losses , 1999, The British journal of ophthalmology.
[30] A. Safran,et al. Combined use of several preferred retinal loci in patients with macular disorders when reading single words , 1999, Vision Research.
[31] R A Schuchard,et al. Using two preferred retinal loci for different lighting conditions in patients with central scotomas. , 1997, Investigative ophthalmology & visual science.
[32] R. Schuchard,et al. Preferred retinal loci relationship to macular scotomas in a low-vision population. , 1997, Ophthalmology.
[33] S. Whittaker,et al. Saccade control without a fovea , 1991, Vision Research.
[34] Stephen G. Whittaker,et al. Foveating saccades , 1990, Vision Research.
[35] H. Bedell,et al. The oculomotor reference in humans with bilateral macular disease. , 1990, Investigative ophthalmology & visual science.
[36] L. Arend,et al. Reading with a macular scotoma. I. Retinal location of scotoma and fixation area. , 1986, Investigative ophthalmology & visual science.
[37] S. Whittaker,et al. Scanning characters and reading with a central scotoma. , 1985, American journal of optometry and physiological optics.
[38] R. Steinman. Effect of Target Size, Luminance, and Color on Monocular Fixation* , 1965 .
[39] G. K. Noorden,et al. Phenomenology of eccentric fixation. , 1962, American journal of ophthalmology.
[40] D G Pelli,et al. The VideoToolbox software for visual psychophysics: transforming numbers into movies. , 1997, Spatial vision.
[41] D H Brainard,et al. The Psychophysics Toolbox. , 1997, Spatial vision.
[42] Ra Schuchard,et al. Preferred retinal locus. A review with applications in low vision rehabilitation , 1994 .
[43] Thomas W. Raasch,et al. retinal locus for fixation : pericentral fixation targets , 1992 .