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PUBMED FOR HANDHELDS

Journal Abstract Search


360 related items for PubMed ID: 28424296

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  • 3. Spatial receptive fields in the retina and dorsal lateral geniculate nucleus of mice lacking rods and cones.
    Procyk CA, Eleftheriou CG, Storchi R, Allen AE, Milosavljevic N, Brown TM, Lucas RJ.
    J Neurophysiol; 2015 Aug; 114(2):1321-30. PubMed ID: 26084909
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  • 9. Unmasking inhibition prolongs neuronal function in retinal degeneration mouse model.
    Wang Q, Banerjee S, So C, Qiu C, Lam HC, Tse D, Völgyi B, Pan F.
    FASEB J; 2020 Nov; 34(11):15282-15299. PubMed ID: 32985731
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  • 10. Single-cell RNA sequencing of the retina in a model of retinitis pigmentosa reveals early responses to degeneration in rods and cones.
    Karademir D, Todorova V, Ebner LJA, Samardzija M, Grimm C.
    BMC Biol; 2022 Apr 12; 20(1):86. PubMed ID: 35413909
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  • 11. Clusterin enhances cell survival by suppressing neuronal nitric-oxide synthase expression in the rhodopsin S334ter-line3 retinitis pigmentosa model.
    Vargas A, Yamamoto KL, Craft CM, Lee EJ.
    Brain Res; 2021 Oct 01; 1768():147575. PubMed ID: 34242654
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  • 14. Cell Death Pathways in Mutant Rhodopsin Rat Models Identifies Genotype-Specific Targets Controlling Retinal Degeneration.
    Viringipurampeer IA, Gregory-Evans CY, Metcalfe AL, Bashar E, Moritz OL, Gregory-Evans K.
    Mol Neurobiol; 2019 Mar 01; 56(3):1637-1652. PubMed ID: 29911255
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  • 15. Selective transplantation of rods delays cone loss in a retinitis pigmentosa model.
    Mohand-Said S, Hicks D, Dreyfus H, Sahel JA.
    Arch Ophthalmol; 2000 Jun 01; 118(6):807-11. PubMed ID: 10865319
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