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Journal #590
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Molecular Vision
15
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Molecular Vision
51956
Intrinsically photosensitive retinal ganglion cells are resistant to N-methyl-D-aspartic acid excitotoxicity
DeParis S; Caprara C; Grimm C
Molecular Vision
2012; 18: 2814-2827
52066
Association of LOXL1 gene polymorphisms with exfoliation syndrome/glaucoma and primary open angle glaucoma in a Turkish population
Kasım B; Irkeç M; Alikaşifoğlu M; Orhan M; Mocan MC; Aktaş D
Molecular Vision
2013; 19: 114-120
52065
Screening of the LTBP2 gene in a north Indian population with primary congenital glaucoma
Mohanty K; Tanwar M; Dada R; Dada T
Molecular Vision
2013; 19: 78-84
52077
Effects of polymorphisms in vitamin E-, vitamin C-, and glutathione peroxidase-related genes on serum biomarkers and associations with glaucoma
Zanon-Moreno V; Asensio-Marquez EM; Ciancotti-Oliver L; Garcia-Medina JJ; Sanz P; Ortega-Azorin C; Pinazo-Duran MD; Ordovás JM; Corella D
Molecular Vision
2013; 19: 231-242
52096
Polymorphisms in matrix metalloproteinases MMP1 and MMP9 are associated with primary open-angle and angle closure glaucoma in a Pakistani population
Micheal S; Yousaf S; Khan MI; Akhtar F; Islam F; Khan WA; den Hollander AI; Qamar R; Ahmed A
Molecular Vision
2013; 19: 441-447
52039
Compound heterozygote myocilin mutations in a pedigree with high prevalence of primary open-angle glaucoma
Young TK; Souzeau E; Liu L; Kearns LS; Burdon KP; Craig JE; Ruddle JB
Molecular Vision
2012; 18: 3064-3069
51958
Isolation of primary mouse retinal ganglion cells using immunopanning-magnetic separation
Hong S; Iizuka Y; Kim CY; Seong GJ
Molecular Vision
2012; 18: 2922-2930
51957
Calcineurin activation causes retinal ganglion cell degeneration
Qu J; Matsouaka R; Betensky RA; Hyman BT; Grosskreutz CL
Molecular Vision
2012; 18: 2828-2838
51716
A model for the easy assessment of pressure-dependent damage to retinal ganglion cells using cyan fluorescent protein-expressing transgenic mice
Tsuruga H; Murata H; Araie M; Aihara M
Molecular Vision
2012; 18: 2468-2478
51849
Induction of amyloid-β(1-42) in the retina and optic nerve head of chronic ocular hypertensive monkeys
Ito Y; Shimazawa M; Tsuruma K; Mayama C; Ishii K; Onoe H; Aihara M; Araie M; Hara H
Molecular Vision
2012; 18: 2647-2657
52076
Mitochondrial DNA nucleotide changes in primary congenital glaucoma patients
Kumar M; Tanwar M; Faiq MA; Pani J; Shamsi MB; Dada T; Dada R
Molecular Vision
2013; 19: 220-230
52067
Association of frizzled-related protein (MFRP) and heat shock protein 70 (HSP70) single nucleotide polymorphisms with primary angle closure in a Han Chinese population: Jiangsu Eye Study
Shi H; Zhu R; Hu N; Shi J; Zhang J; Jiang L; Jiang H; Guan H
Molecular Vision
2013; 19: 128-134
52026
The role of lysyl oxidase-like 1 DNA copy number variants in exfoliation glaucoma
Liu Y; Whigham BT; Wheeler J; Williams SE; Rautenbach RM; Ziskind A; Ramsay M; Carmichael TR; Ashley-Koch AE; Allingham RR; Hauser MA
Molecular Vision
2012; 18: 2976-2981
52078
Contribution of the latent transforming growth factor-beta binding protein 2 gene to etiology of primary open angle glaucoma and pseudoexfoliation syndrome
Jelodari-Mamaghani S; Haji-Seyed-Javadi R; Suri F; Nilforushan N; Yazdani S; Kamyab K; Elahi E
Molecular Vision
2013; 19: 333-347
51850
Review: tauopathy in the retina and optic nerve: does it shadow pathological changes in the brain?
Ho WL; Leung Y; Tsang AW; So KF; Chiu K; Chang RC
Molecular Vision
2012; 18: 2700-2710
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