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PUBMED FOR HANDHELDS

Journal Abstract Search


360 related items for PubMed ID: 28424296

  • 21. Remodeling of cone photoreceptor cells after rod degeneration in rd mice.
    Lin B, Masland RH, Strettoi E.
    Exp Eye Res; 2009 Mar; 88(3):589-99. PubMed ID: 19087876
    [Abstract] [Full Text] [Related]

  • 22. Cone survival and preservation of visual acuity in an animal model of retinal degeneration.
    Piano I, Novelli E, Gasco P, Ghidoni R, Strettoi E, Gargini C.
    Eur J Neurosci; 2013 Jun; 37(11):1853-62. PubMed ID: 23551187
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  • 23. Rescuing cones and daylight vision in retinitis pigmentosa mice.
    Guadagni V, Biagioni M, Novelli E, Aretini P, Mazzanti CM, Strettoi E.
    FASEB J; 2019 Sep; 33(9):10177-10192. PubMed ID: 31199887
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  • 24. Rod- versus cone-driven ERGs at different stimulus sizes in normal subjects and retinitis pigmentosa patients.
    Aher AJ, McKeefry DJ, Parry NRA, Maguire J, Murray IJ, Tsai TI, Huchzermeyer C, Kremers J.
    Doc Ophthalmol; 2018 Feb; 136(1):27-43. PubMed ID: 29134295
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  • 25. Soluble CX3CL1 gene therapy improves cone survival and function in mouse models of retinitis pigmentosa.
    Wang SK, Xue Y, Rana P, Hong CM, Cepko CL.
    Proc Natl Acad Sci U S A; 2019 May 14; 116(20):10140-10149. PubMed ID: 31036641
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  • 27. Mild Intraocular Pressure Elevation in Mice Reveals Distinct Retinal Ganglion Cell Functional Thresholds and Pressure-Dependent Properties.
    Tao X, Sabharwal J, Seilheimer RL, Wu SM, Frankfort BJ.
    J Neurosci; 2019 Mar 06; 39(10):1881-1891. PubMed ID: 30622167
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  • 28. Mapping retinal degeneration and loss-of-function in Rd-FTL mice.
    Greferath U, Goh HC, Chua PY, Astrand E, O'Brien EE, Fletcher EL, Murphy M.
    Invest Ophthalmol Vis Sci; 2009 Dec 06; 50(12):5955-64. PubMed ID: 19661224
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  • 30. Inhibition, but not excitation, recovers from partial cone loss with greater spatiotemporal integration, synapse density, and frequency.
    Lee JY, Care RA, Kastner DB, Della Santina L, Dunn FA.
    Cell Rep; 2022 Feb 01; 38(5):110317. PubMed ID: 35108533
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  • 33. Dopamine differentially affects retinal circuits to shape the retinal code.
    Warwick RA, Heukamp AS, Riccitelli S, Rivlin-Etzion M.
    J Physiol; 2023 Apr 01; 601(7):1265-1286. PubMed ID: 36807203
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  • 34. Differential progression of structural and functional alterations in distinct retinal ganglion cell types in a mouse model of glaucoma.
    Della Santina L, Inman DM, Lupien CB, Horner PJ, Wong RO.
    J Neurosci; 2013 Oct 30; 33(44):17444-57. PubMed ID: 24174678
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  • 36. Cone dystrophy with "supernormal" rod ERG: psychophysical testing shows comparable rod and cone temporal sensitivity losses with no gain in rod function.
    Stockman A, Henning GB, Michaelides M, Moore AT, Webster AR, Cammack J, Ripamonti C.
    Invest Ophthalmol Vis Sci; 2014 Feb 10; 55(2):832-40. PubMed ID: 24370833
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  • 38. Cone degeneration following rod ablation in a reversible model of retinal degeneration.
    Choi RY, Engbretson GA, Solessio EC, Jones GA, Coughlin A, Aleksic I, Zuber ME.
    Invest Ophthalmol Vis Sci; 2011 Jan 10; 52(1):364-73. PubMed ID: 20720220
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  • 39. Reliability of Mesopic Measures of Visual Acuity and Contrast Sensitivity and Their Correlation with Rod and Cone Function in Retinitis Pigmentosa.
    Bittner AK, Ferraz MC.
    Ophthalmic Res; 2020 Jan 10; 63(2):133-140. PubMed ID: 31805550
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