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Journal Abstract Search


116 related items for PubMed ID: 12962990

  • 1. Alterations of L- and M-cone driven ERGs in cone and cone-rod dystrophies.
    Scholl HP, Kremers J.
    Vision Res; 2003 Oct; 43(22):2333-44. PubMed ID: 12962990
    [Abstract] [Full Text] [Related]

  • 2. Large phase differences between L-cone- and M-cone-driven electroretinograms in retinitis pigmentosa.
    Scholl HP, Kremers J.
    Invest Ophthalmol Vis Sci; 2000 Sep; 41(10):3225-33. PubMed ID: 10967087
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  • 5. L- and M-cone-driven electroretinograms in Stargardt's macular dystrophy-fundus flavimaculatus.
    Scholl HP, Kremers J, Vonthein R, White K, Weber BH.
    Invest Ophthalmol Vis Sci; 2001 May; 42(6):1380-9. PubMed ID: 11328755
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  • 6. Progressive cone dystrophy with deutan genotype and phenotype.
    Scholl HP, Kremers J, Besch D, Zrenner E, Jägle H.
    Graefes Arch Clin Exp Ophthalmol; 2006 Feb; 244(2):183-91. PubMed ID: 16082559
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  • 7. S-cone function in patients with retinitis pigmentosa.
    Swanson WH, Birch DG, Anderson JL.
    Invest Ophthalmol Vis Sci; 1993 Oct; 34(11):3045-55. PubMed ID: 8407212
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  • 8. S-cone electroretinogram to Ganzfeld stimuli in patients with retinitis pigmentosa.
    Yamamoto S, Hayashi M, Takeuchi S.
    Doc Ophthalmol; 1999 Oct; 99(2):183-9. PubMed ID: 11097121
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  • 9. [Multi-flash ERG in cone dystrophies and cone-rod dystrophies].
    Walter P, Widder RA, Brunner R.
    Klin Monbl Augenheilkd; 1998 Feb; 212(2):88-92. PubMed ID: 9577807
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  • 10. L- and M-cone driven ERGs are differently altered in Best's macular dystrophy.
    Scholl HP, Kremers J, Apfelstedt-Sylla E, Zrenner E.
    Vision Res; 2000 Feb; 40(22):3159-68. PubMed ID: 10996618
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  • 11. Phototransduction in human cones measured using the alpha-wave of the ERG.
    Hood DC, Birch DG.
    Vision Res; 1995 Oct; 35(20):2801-10. PubMed ID: 8533321
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  • 12. Abnormalities of the retinal cone system in retinitis pigmentosa.
    Hood DC, Birch DG.
    Vision Res; 1996 Jun; 36(11):1699-709. PubMed ID: 8759470
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  • 13. Macular dystrophy with protan genotype and phenotype studied with cone type specific ERGs.
    Scholl HP, Kremers J, Wissinger B.
    Curr Eye Res; 2001 Mar; 22(3):221-8. PubMed ID: 11462159
    [Abstract] [Full Text] [Related]

  • 14. Rod-/L-cone and rod-/M-cone interactions in electroretinograms at different temporal frequencies.
    Kremers J, Scholl HP.
    Vis Neurosci; 2001 Mar; 18(3):339-51. PubMed ID: 11497411
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  • 15. Mouse Cones Adapt Fast, Rods Slowly In Vivo.
    Joachimsthaler A, Kremers J.
    Invest Ophthalmol Vis Sci; 2019 May 01; 60(6):2152-2164. PubMed ID: 31100107
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  • 16. 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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  • 17. Cone and rod dysfunction in fundus albipunctatus with RDH5 mutation: an electrophysiological study.
    Niwa Y, Kondo M, Ueno S, Nakamura M, Terasaki H, Miyake Y.
    Invest Ophthalmol Vis Sci; 2005 Apr 10; 46(4):1480-5. PubMed ID: 15790919
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  • 18. Cone selective adaptation influences L- and M-cone driven signals in electroretinography and psychophysics.
    Kremers J, Stepien MW, Scholl HP, Saito C.
    J Vis; 2003 Apr 10; 3(2):146-60. PubMed ID: 12678617
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  • 19. ON-pathway dysfunction and timing properties of the flicker ERG in carriers of X-linked retinitis pigmentosa.
    Alexander KR, Barnes CS, Fishman GA.
    Invest Ophthalmol Vis Sci; 2003 Sep 10; 44(9):4017-25. PubMed ID: 12939324
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