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5.1 Rodent (16)

Showing records 1 to 16

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20667 Ganglion cell death in glaucoma: From mice to men
Nickells RW
Veterinary Ophthalmology 2007; 10: 88-94
20535 Expression of N-methyl-d-aspartate receptor 1 in rats with chronic ocular hypertension
Kim JH; Lee NY; Jung SW; Park CK
Neuroscience 2007; 149: 908-916
20534 The expression of heat shock protein 27 in retinal ganglion and glial cells in a rat glaucoma model
Kalesnykas G; Niittykoski M; Rantala J; Miettinen R; Salminen A; Kaarniranta K; Uusitalo H
Neuroscience 2007; 150: 692-704
20517 Effect of ocular hypertension on retinal GABAergic activity
Moreno MC; de Zavalia N; Sande P; Jaliffa CO; Fernandez DC; Keller Sarmiento MI; Rosenstein RE
Neurochemistry International 2008; 52: 675-682
20430 Dependency of Intraocular Pressure Elevation and Glaucomatous Changes in DBA/2J and DBA/2J-Rj Mice
Scholz M; Buder T; Seeber S; Adamek E; Becker CM; Lütjen-Drecoll E
Investigative Ophthalmology and Visual Science 2008; 49: 613-621
20483 Axons of retinal ganglion cells are insulted in the optic nerve early in DBA/2J glaucoma
Howell GR; Libby RT; Jakobs TC; Smith RS; Phalan FC; Barter JW; Barbay JM; Marchant JK; Mahesh N; Porciatti V
The Journal of Cell Biology 2007; 179: 1523-1537
20544 Expression of glutamate receptor 2 in retinal ganglion cells in the eyes with chronic elevated intraocular pressure: Experiment with rats
Ling Z-H; Sun X-H
Zhonghua Yi Xue Za Zhi 2007; 87: 2727-2729
20796 Blocking LINGO-1 Function Promotes Retinal Ganglion Cell Survival Following Ocular Hypertension and Optic Nerve Transection
Fu QL; Hu B; Wu W; Pepinsky RB; Mi S; So KF
Investigative Ophthalmology and Visual Science 2008; 49: 975-985
20520 Retinal ganglion cells downregulate gene expression and lose their axons within the optic nerve head in a mouse glaucoma model
Soto I; Oglesby E; Buckingham BP; Son JL; Roberson EDO; Steele MR; Inman DM; Vetter ML; Horner PJ; Marsh-Armstrong N
Journal of Neuroscience 2008; 28: 548-561
20684 Inducible nitric oxide synthase, Nos2, does not mediate optic neuropathy and retinopathy in the DBA/2J glaucoma model.
Libby RT; Howell GR; Pang IH; Savinova OV; Mehalow AK; Barter JW; Smith RS; Clark AF; John SW
BMC Neuroscience 2007; 8: 108
20828 Effect on Diurnal Intraocular Pressure Variation of Eliminating the α-2 Adrenergic Receptor Subtypes in the Mouse
Aihara M; Lindsey JD; Weinreb RN
Investigative Ophthalmology and Visual Science 2008; 49: 929-933
20385 Rodent electroretinography: Methods for extraction and interpretation of rod and cone responses
Weymouth AE; Vingrys AJ
Progress in Retinal and Eye Research 2008; 27: 1-44
20683 Transgenic mice with ocular overexpression of an adrenomedullin receptor reflect human acute angle-closure glaucoma.
Ittner LM; Schwerdtfeger K; Kunz TH; Muff R; Husmann K; Grimm C; Hafezi F; Lang KS; Kurrer MO; Gotz J
Clinical Science 2008; 114: 49-58
20522 Up-regulated endogenous erythropoietin/erythropoietin receptor system and exogenous erythropoietin rescue retinal ganglion cells after chronic ocular hypertension
Fu Q-L; Wu W; Wang H; Li X; Lee VWH; So K-F
Cellular and molecular neurobiology 2008; 28: 317-329
20640 Effect of immunomodulation with anti-CD40L antibody on adenoviral-mediated transgene expression in mouse anterior segment
Cameron Millar J; Pang I-H; Wang W-H; Wang Y; Clark AF
Molecular Vision 2008; 14: 10-19
20615 Topical WIN55212-2 alleviates intraocular hypertension in rats through a CB1 receptor mediated mechanism of action
Oltmanns MH; Samudre SS; Castillo IG; Hosseini A; Lichtman AH; Allen RC; Lattanzio Jr FA; Williams PB
Journal of Ocular Pharmacology and Therapeutics 2008; 24: 104-115

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