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Neuron|January 7, 2000
Color signals in human motion-selective cortexB A Wandell, A B Poirson, W T Newsome, et al.Vision Research|July 9, 1999
Can subretinal microphotodiodes successfully replace degenerated photoreceptors?E Zrenner, A Stett, S Weiss, et al.Human Genetics|November 1, 1992
Deletions in exon 5 of the human rhodopsin gene causing a shift in the reading frame and autosomal dominant retinitis pigmentosaM Horn, P Humphries, M Kunisch, et al.Graefe'S Archive for Clinical and Experimental Ophthalmology = Albrecht Von Graefes Archiv Fur Klinische Und Experimentelle Ophthalmologie|February 1, 2002
Studies on the feasibility of a subretinal visual prosthesis: data from Yucatan micropig and rabbitH N Schwahn, F Gekeler, K Kohler, et al.Documenta Ophthalmologica. Advances in Ophthalmology|August 12, 2016
Transfer characteristics of subretinal visual implants: corneally recorded implant responsesK Stingl, K U Bartz-Schmidt, A Braun, et al.Eye (London, England)|February 9, 2010
A preliminary trial to determine whether prevention of dark adaptation affects the course of early diabetic retinopathyG B Arden, M K Gündüz, A Kurtenbach, et al.Journal of Medical Genetics|April 10, 2009
GPR98 mutations cause Usher syndrome type 2 in malesI Ebermann, M H J Wiesen, E Zrenner, et al.American Journal of Human Genetics|September 6, 2001
CNGA3 mutations in hereditary cone photoreceptor disordersB Wissinger, D Gamer, H Jägle, et al.The American Journal of Clinical Nutrition|May 8, 1999
Biochemical but not clinical vitamin A deficiency results from mutations in the gene for retinol binding proteinH K Biesalski, J Frank, S C Beck, et al.Der Ophthalmologe : Zeitschrift Der Deutschen Ophthalmologischen Gesellschaft|February 22, 2012
[What can blind patients see in daily life with the subretinal Alpha IMS implant? Current overview from the clinical trial in Tübingen]K Stingl, K U Bartz-Schmidt, D Besch, et al.Pageof 30