Photovoltaic Retinal Prosthesis with High Pixel Density
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A. Sher | K. Mathieson | T. Kamins | L. Galambos | P. Huie | J. Harris | D. Palanker | Richard D. Smith | G. Goetz | Lele Wang | J. Loudin | Georges A. Goetz | Richard Smith
[1] K. Tansley,et al. HEREDITARY DEGENERATION OF THE RAT RETINA , 1938, The British journal of ophthalmology.
[2] S. B. Brummer,et al. Electrical stimulation of the nervous system: The principle of safe charge injection with noble metal electrodes , 1975 .
[3] X. Beebe,et al. Charge injection limits of activated iridium oxide electrodes with 0.2 ms pulses in bicarbonate buffered saline (neurological stimulation application) , 1988, IEEE Transactions on Biomedical Engineering.
[4] J. L. Stone,et al. Morphometric analysis of macular photoreceptors and ganglion cells in retinas with retinitis pigmentosa. , 1992, Archives of ophthalmology.
[5] M. Green,et al. Optical properties of intrinsic silicon at 300 K , 1995 .
[6] Larry J. Hornbeck,et al. Digital Light Processing for high-brightness high-resolution applications , 1997, Electronic Imaging.
[7] Martin Stelzle,et al. Electrical Properties of Micro-Photodiode Arrays for Use as Artificial Retina Implant , 2001 .
[8] A Hofman,et al. Risk factors for age-related macular degeneration: Pooled findings from three continents. , 2001, Ophthalmology.
[9] M. Humayun,et al. MORPHOMETRIC ANALYSIS OF THE MACULA IN EYES WITH DISCIFORM AGE-RELATED MACULAR DEGENERATION , 2002, Retina.
[10] Marianne Haim,et al. Epidemiology of retinitis pigmentosa in Denmark. , 2002, Acta ophthalmologica Scandinavica. Supplement.
[11] B. Jones,et al. Retinal remodeling triggered by photoreceptor degenerations , 2003, The Journal of comparative neurology.
[12] A.M. Litke,et al. What does the eye tell the brain?: Development of a system for the large scale recording of retinal output activity , 2003, 2003 IEEE Nuclear Science Symposium. Conference Record (IEEE Cat. No.03CH37515).
[13] Daniel Palanker,et al. Migration of retinal cells through a perforated membrane: implications for a high-resolution prosthesis. , 2004, Investigative ophthalmology & visual science.
[14] Stuart F Cogan,et al. Over-pulsing degrades activated iridium oxide films used for intracortical neural stimulation , 2004, Journal of Neuroscience Methods.
[15] A. Y. Chow,et al. The artificial silicon retina microchip for the treatment of vision loss from retinitis pigmentosa. , 2004, Archives of ophthalmology.
[16] B. Jones,et al. Retinal remodeling during retinal degeneration. , 2005, Experimental eye research.
[17] A. Y. Chow,et al. Possible sources of neuroprotection following subretinal silicon chip implantation in RCS rats , 2005, Journal of neural engineering.
[18] Daniel Palanker,et al. Design of a high-resolution optoelectronic retinal prosthesis , 2005, Journal of neural engineering.
[19] Liang Xu,et al. Visual response properties of retinal ganglion cells in the royal college of surgeons dystrophic rat. , 2006, Investigative ophthalmology & visual science.
[20] Philip R. Troyk,et al. Potential-biased, asymmetric waveforms for charge-injection with activated iridium oxide (AIROF) neural stimulation electrodes , 2006, IEEE Transactions on Biomedical Engineering.
[21] Joseph F Rizzo,et al. Thresholds for activation of rabbit retinal ganglion cells with a subretinal electrode. , 2006, Experimental eye research.
[22] J D Loudin,et al. Optoelectronic retinal prosthesis: system design and performance , 2007, Journal of neural engineering.
[23] Jonathon Shlens,et al. Spatial Properties and Functional Organization of Small Bistratified Ganglion Cells in Primate Retina , 2007, The Journal of Neuroscience.
[24] Paul J DeMarco,et al. Stimulation via a subretinally placed prosthetic elicits central activity and induces a trophic effect on visual responses. , 2007, Investigative ophthalmology & visual science.
[25] David H Sliney,et al. Maximum permissible exposures for ocular safety (ANSI 2000), with emphasis on ophthalmic devices. , 2007, Journal of the Optical Society of America. A, Optics, image science, and vision.
[26] E J Chichilnisky,et al. Behavioral / Systems / Cognitive Identification and Characterization of a Y-Like Primate Retinal Ganglion Cell Type , 2007 .
[27] E. Strettoi,et al. Retinal Ganglion Cells Survive and Maintain Normal Dendritic Morphology in a Mouse Model of Inherited Photoreceptor Degeneration , 2008, The Journal of Neuroscience.
[28] E. Chichilnisky,et al. High-Resolution Electrical Stimulation of Primate Retina for Epiretinal Implant Design , 2008, The Journal of Neuroscience.
[29] D Besch,et al. Extraocular surgery for implantation of an active subretinal visual prosthesis with external connections: feasibility and outcome in seven patients , 2008, British Journal of Ophthalmology.
[30] P. Peumans,et al. Curving monolithic silicon for nonplanar focal plane array applications , 2008 .
[31] J. Vander. Extraocular surgery for implantation of an active subretinal visual prosthesis with external connections: feasibility and outcome in seven patients , 2009 .
[32] Daniel Palanker,et al. A curvable silicon retinal implant , 2009, 2009 IEEE International Electron Devices Meeting (IEDM).
[33] B. Jones,et al. Effect of shape and coating of a subretinal prosthesis on its integration with the retina. , 2009, Experimental eye research.
[34] Jonathon Shlens,et al. High sensitivity rod photoreceptor input to the blue-yellow color opponent pathway in macaque retina , 2009, Nature Neuroscience.
[35] Jessy D. Dorn,et al. Blind subjects implanted with the Argus II retinal prosthesis are able to improve performance in a spatial-motor task , 2010, British Journal of Ophthalmology.
[36] Alfred Stett,et al. Subretinal electronic chips allow blind patients to read letters and combine them to words , 2010, Proceedings of the Royal Society B: Biological Sciences.
[37] Rajmohan Bhandari,et al. Neural electrode degradation from continuous electrical stimulation: Comparison of sputtered and activated iridium oxide , 2010, Journal of Neuroscience Methods.
[38] Stuart F. Cogan,et al. Photodiode Circuits for Retinal Prostheses , 2011, IEEE Transactions on Biomedical Circuits and Systems.