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    Results: 1 to 20 of 100

    1.

    Atrophy of the lateral geniculate nucleus in human glaucoma detected by magnetic resonance imaging.

    Gupta N, Greenberg G, de Tilly LN, Gray B, Polemidiotis M, Yücel YH.

    Br J Ophthalmol. 2009 Jan;93(1):56-60. Epub 2008 Aug 12.PMID: 18697810 [PubMed - indexed for MEDLINE]Related articlesFree article

    2.

    Oxidative injury by peroxynitrite in neural and vascular tissue of the lateral geniculate nucleus in experimental glaucoma.

    Luthra A, Gupta N, Kaufman PL, Weinreb RN, Yücel YH.

    Exp Eye Res. 2005 Jan;80(1):43-9.PMID: 15652525 [PubMed - indexed for MEDLINE]Related articles

    3.

    Atrophy of relay neurons in magno- and parvocellular layers in the lateral geniculate nucleus in experimental glaucoma.

    Yücel YH, Zhang Q, Weinreb RN, Kaufman PL, Gupta N.

    Invest Ophthalmol Vis Sci. 2001 Dec;42(13):3216-22.PMID: 11726625 [PubMed - indexed for MEDLINE]Related articlesFree article

    4.

    Chronic ocular hypertension induces dendrite pathology in the lateral geniculate nucleus of the brain.

    Gupta N, Ly T, Zhang Q, Kaufman PL, Weinreb RN, Yücel YH.

    Exp Eye Res. 2007 Jan;84(1):176-84. Epub 2006 Nov 7.PMID: 17094963 [PubMed - indexed for MEDLINE]Related articles

    5.

    Memantine protects neurons from shrinkage in the lateral geniculate nucleus in experimental glaucoma.

    Yücel YH, Gupta N, Zhang Q, Mizisin AP, Kalichman MW, Weinreb RN.

    Arch Ophthalmol. 2006 Feb;124(2):217-25.PMID: 16476892 [PubMed - indexed for MEDLINE]Related articlesFree article

    6.

    Human glaucoma and neural degeneration in intracranial optic nerve, lateral geniculate nucleus, and visual cortex.

    Gupta N, Ang LC, Noël de Tilly L, Bidaisee L, Yücel YH.

    Br J Ophthalmol. 2006 Jun;90(6):674-8. Epub 2006 Feb 7.PMID: 16464969 [PubMed - indexed for MEDLINE]Related articlesFree article

    7.

    Loss of neurons in magnocellular and parvocellular layers of the lateral geniculate nucleus in glaucoma.

    Yücel YH, Zhang Q, Gupta N, Kaufman PL, Weinreb RN.

    Arch Ophthalmol. 2000 Mar;118(3):378-84.PMID: 10721961 [PubMed - indexed for MEDLINE]Related articles

    8.

    Magnetic resonance imaging of the brain in patients with pseudoexfoliation syndrome and glaucoma.

    Yüksel N, Anik Y, Altintaş O, Onur I, Cağlar Y, Demirci A.

    Ophthalmologica. 2006;220(2):125-30.PMID: 16491036 [PubMed - indexed for MEDLINE]Related articles

    9.

    Brain changes in glaucoma.

    Gupta N, Yücel YH.

    Eur J Ophthalmol. 2003 Apr;13 Suppl 3:S32-5. Review.PMID: 12749675 [PubMed - indexed for MEDLINE]Related articles

    10.

    Effects of retinal ganglion cell loss on magno-, parvo-, koniocellular pathways in the lateral geniculate nucleus and visual cortex in glaucoma.

    Yücel YH, Zhang Q, Weinreb RN, Kaufman PL, Gupta N.

    Prog Retin Eye Res. 2003 Jul;22(4):465-81. Review.PMID: 12742392 [PubMed - indexed for MEDLINE]Related articles

    11.

    Association of magnetic resonance imaging of anterior optic pathway with glaucomatous visual field damage and optic disc cupping.

    Kashiwagi K, Okubo T, Tsukahara S.

    J Glaucoma. 2004 Jun;13(3):189-95.PMID: 15118461 [PubMed - indexed for MEDLINE]Related articles

    12.

    Recovery from optic neuritis: an ROI-based analysis of LGN and visual cortical areas.

    Korsholm K, Madsen KH, Frederiksen JL, Skimminge A, Lund TE.

    Brain. 2007 May;130(Pt 5):1244-53.PMID: 17472983 [PubMed - indexed for MEDLINE]Related articlesFree article

    13.

    Decreased lateral geniculate nucleus activation in retrogeniculate hemianopia demonstrated by functional magnetic resonance imaging at 4 Tesla.

    Miki A, Liu GT, Modestino EJ, Bonhomme GR, Liu CS, Haselgrove JC.

    Ophthalmologica. 2005 Jan-Feb;219(1):11-5.PMID: 15627821 [PubMed - indexed for MEDLINE]Related articles

    14.

    The cupped disc. Who needs neuroimaging?

    Greenfield DS, Siatkowski RM, Glaser JS, Schatz NJ, Parrish RK 2nd.

    Ophthalmology. 1998 Oct;105(10):1866-74.PMID: 9787356 [PubMed - indexed for MEDLINE]Related articles

    15.

    Decreased activation of the lateral geniculate nucleus in a patient with anisometropic amblyopia demonstrated by functional magnetic resonance imaging.

    Miki A, Liu GT, Goldsmith ZG, Liu CS, Haselgrove JC.

    Ophthalmologica. 2003 Sep-Oct;217(5):365-9.PMID: 12913328 [PubMed - indexed for MEDLINE]Related articles

    16.
    17.

    Functional imaging of the human lateral geniculate nucleus and pulvinar.

    Kastner S, O'Connor DH, Fukui MM, Fehd HM, Herwig U, Pinsk MA.

    J Neurophysiol. 2004 Jan;91(1):438-48. Epub 2003 Sep 17.PMID: 13679404 [PubMed - indexed for MEDLINE]Related articlesFree article

    18.

    Retinotopic organization of primary visual cortex in glaucoma: Comparing fMRI measurements of cortical function with visual field loss.

    Duncan RO, Sample PA, Weinreb RN, Bowd C, Zangwill LM.

    Prog Retin Eye Res. 2007 Jan;26(1):38-56. Epub 2006 Nov 27. Review.PMID: 17126063 [PubMed - indexed for MEDLINE]Related articlesFree article

    19.

    Changes in visual fields and lateral geniculate nucleus in monkey laser-induced high intraocular pressure model.

    Sasaoka M, Nakamura K, Shimazawa M, Ito Y, Araie M, Hara H.

    Exp Eye Res. 2008 May;86(5):770-82. Epub 2008 Feb 26.PMID: 18378230 [PubMed - indexed for MEDLINE]Related articles

    20.

    Effects of voxel size on detection of lateral geniculate nucleus activation in functional magnetic resonance imaging.

    Miki A, Liu CS, Liu GT.

    Jpn J Ophthalmol. 2004 Nov-Dec;48(6):558-64.PMID: 15592780 [PubMed - indexed for MEDLINE]Related articles

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