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Ophthalmology|June 21, 2016
Clinical Characteristics and Risk Factors of Extensive Macular Atrophy with Pseudodrusen: The EMAP Case-Control National Clinical TrialAymeric Douillard, Marie-Christine Picot, Cécile Delcourt, et al.Brain Communications|May 31, 2021
Dominant <i>ACO2</i> mutations are a frequent cause of isolated optic atrophyMajida Charif, Naïg Gueguen, Marc Ferré, et al.Scientific Reports|May 3, 2018
Dietary, environmental, and genetic risk factors of Extensive Macular Atrophy with Pseudodrusen, a severe bilateral macular atrophy of middle-aged patientsAymeric Douillard, Marie-Christine Picot, Cécile Delcourt, et al.JAMA Neurology|November 29, 2017
Neurologic Phenotypes Associated With Mutations in RTN4IP1 (OPA10) in Children and Young AdultsMajida Charif, Alessia Nasca, Kyle Thompson, et al.American Journal of Human Genetics|February 14, 2012
Whole-exome sequencing identifies mutations in GPR179 leading to autosomal-recessive complete congenital stationary night blindnessIsabelle Audo, Kinga Bujakowska, Elise Orhan, et al.The British Journal of Ophthalmology|July 30, 2024
Characterising the refractive error in paediatric patients with congenital stationary night blindness: a multicentre studyAustin D Igelman, Elizabeth White, Alaa Tayyib, et al.Human Mutation|March 3, 2019
Where are the missing gene defects in inherited retinal disorders? Intronic and synonymous variants contribute at least to 4% of CACNA1F-mediated inherited retinal disordersChristina Zeitz, Christelle Michiels, Marion Neuillé, et al.Genetics in Medicine : Official Journal of the American College of Medical Genetics|April 21, 2020
Resolving the dark matter of ABCA4 for 1054 Stargardt disease probands through integrated genomics and transcriptomicsMubeen Khan, Stéphanie S Cornelis, Marta Del Pozo-Valero, et al.Pageof 6