Evidence of Widespread Retinal Dysfunction in Patients with Stargardt Disease and Morphologically Unaffected Carrier Relatives
Maia-Lopes et al.
IOVS 2008;49:1191-1199.
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Mutations in the peripherin/RDS gene are an important cause of multifocal pattern dystrophy simulating STGD1/fundus flavimaculatus
Boon et al.
Br. J. Ophthalmol. 2007;91:1504-1511.
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Macular Pigment and Lutein Supplementation in ABCA4-Associated Retinal Degenerations
Aleman et al.
IOVS 2007;48:1319-1329.
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Light and inherited retinal degeneration
Paskowitz et al.
Br. J. Ophthalmol. 2006;90:1060-1066.
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Perifoveal function in patients with north Carolina macular dystrophy: the importance of accounting for fixation locus.
Seiple et al.
IOVS 2006;47:1703-1709.
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Correlation of Clinical and Genetic Findings in Hungarian Patients with Stargardt Disease
Hargitai et al.
IOVS 2005;46:4402-4408.
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ABCA4-Associated Retinal Degenerations Spare Structure and Function of the Human Parapapillary Retina
Cideciyan et al.
IOVS 2005;46:4739-4746.
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ABCA4 mutations causing mislocalization are found frequently in patients with severe retinal dystrophies
Wiszniewski et al.
Hum Mol Genet 2005;14:2769-2778.
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Assessment of Central Visual Function in Stargardt's Disease/Fundus Flavimaculatus with Ultrahigh-Resolution Optical Coherence Tomography
Ergun et al.
IOVS 2005;46:310-316.
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Denaturing HPLC Profiling of the ABCA4 Gene for Reliable Detection of Allelic Variations
Stenirri et al.
Clin. Chem. 2004;50:1336-1343.
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Dark Adaptation of Rod Photoreceptors in Normal Subjects, and in Patients with Stargardt Disease and an ABCA4 Mutation
Derwent et al.
IOVS 2004;45:2447-2456.
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Mutation Spectrum and Founder Chromosomes for the ABCA4 Gene in South African Patients with Stargardt Disease
September et al.
IOVS 2004;45:1705-1711.
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Mutations in ABCA4 result in accumulation of lipofuscin before slowing of the retinoid cycle: a reappraisal of the human disease sequence
Cideciyan et al.
Hum Mol Genet 2004;13:525-534.
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ABCA4 Gene Sequence Variations in Patients With Autosomal Recessive Cone-Rod Dystrophy
Fishman et al.
Arch Ophthalmol 2003;121:851-855.
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Altered Recovery of Macular Function after Bleaching in Stargardt's Disease-Fundus Flavimaculatus: Pattern VEP Evidence
Parisi et al.
IOVS 2002;43:2741-2748.
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Alterations of Slow and Fast Rod ERG Signals in Patients with Molecularly Confirmed Stargardt Disease Type 1
Scholl et al.
IOVS 2002;43:1248-1256.
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Genotype-Phenotype Analysis of ABCR Variants in Macular Degeneration Probands and Siblings
Bernstein et al.
IOVS 2002;43:466-473.
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Mutations in ABCR (ABCA4) in Patients with Stargardt Macular Degeneration or Cone-Rod Degeneration
Briggs et al.
IOVS 2001;42:2229-2236.
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Variation of Codons 1961 and 2177 of the Stargardt Disease Gene Is Not Associated With Age-Related Macular Degeneration
Guymer et al.
Arch Ophthalmol 2001;119:745-751.
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Phenotypic Subtypes of Stargardt Macular Dystrophy-Fundus Flavimaculatus
Lois et al.
Arch Ophthalmol 2001;119:359-369.
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New ABCR Mutations and Clinical Phenotype in Italian Patients with Stargardt Disease
Simonelli et al.
IOVS 2000;41:892-897.
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ABCR Gene Analysis in Familial Exudative Age-Related Macular Degeneration
Souied et al.
IOVS 2000;41:244-247.
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The Effect of Lipid Environment and Retinoids on the ATPase Activity of ABCR, the Photoreceptor ABC Transporter Responsible for Stargardt Macular Dystrophy
Ahn et al.
J. Biol. Chem. 2000;275:20399-20405.
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Membrane Topology of the ATP Binding Cassette Transporter ABCR and Its Relationship to ABC1 and Related ABCA Transporters. IDENTIFICATION OF N-LINKED GLYCOSYLATION SITES
Bungert et al.
J. Biol. Chem. 2001;276:23539-23546.
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The Bst locus on mouse chromosome 16 is associated with age-related subretinal neovascularization
Smith et al.
Proc. Natl. Acad. Sci. USA 2000;97:2191-2195.
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