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    Results: 1 to 20 of 114

    1.

    Axon deviation in the human lamina cribrosa.

    Morgan JE, Jeffery G, Foss AJ.

    Br J Ophthalmol. 1998 Jun;82(6):680-3.PMID: 9797672 [PubMed - indexed for MEDLINE]Related articlesFree article

    2.

    Morphometry of the human lamina cribrosa surface.

    Jonas JB, Mardin CY, Schlötzer-Schrehardt U, Naumann GO.

    Invest Ophthalmol Vis Sci. 1991 Feb;32(2):401-5.PMID: 1993592 [PubMed - indexed for MEDLINE]Related articlesFree article

    3.

    Course of the optic nerve fibers through the lamina cibrosa in human eyes.

    Dichtl A, Jonas JB, Naumann GO.

    Graefes Arch Clin Exp Ophthalmol. 1996 Sep;234(9):581-5.PMID: 8880157 [PubMed - indexed for MEDLINE]Related articles

    4.

    The structure of the lamina cribrosa of the human eye: an immunocytochemical and electron microscopical study.

    Elkington AR, Inman CB, Steart PV, Weller RO.

    Eye (Lond). 1990;4 ( Pt 1):42-57.PMID: 2182351 [PubMed - indexed for MEDLINE]Related articles

    5.

    Evidence of constriction of optic nerve axons at the lamina cribrosa in the normotensive eye in humans and other mammals.

    Holländer H, Makarov F, Stefani FH, Stone J.

    Ophthalmic Res. 1995;27(5):296-309.PMID: 8552370 [PubMed - indexed for MEDLINE]Related articles

    6.

    Evidence that the lamina cribrosa prevents intraretinal myelination of retinal ganglion cell axons.

    Perry VH, Lund RD.

    J Neurocytol. 1990 Apr;19(2):265-72.PMID: 2358833 [PubMed - indexed for MEDLINE]Related articles

    7.

    Age related compliance of the lamina cribrosa in human eyes.

    Albon J, Purslow PP, Karwatowski WS, Easty DL.

    Br J Ophthalmol. 2000 Mar;84(3):318-23.PMID: 10684845 [PubMed - indexed for MEDLINE]Related articlesFree article

    8.

    Finite element modeling of optic nerve head biomechanics.

    Sigal IA, Flanagan JG, Tertinegg I, Ethier CR.

    Invest Ophthalmol Vis Sci. 2004 Dec;45(12):4378-87.PMID: 15557446 [PubMed - indexed for MEDLINE]Related articlesFree article

    9.

    Deformation of the lamina cribrosa by elevated intraocular pressure.

    Yan DB, Coloma FM, Metheetrairut A, Trope GE, Heathcote JG, Ethier CR.

    Br J Ophthalmol. 1994 Aug;78(8):643-8.PMID: 7918293 [PubMed - indexed for MEDLINE]Related articlesFree article

    10.

    Central corneal thickness and thickness of the lamina cribrosa in human eyes.

    Jonas JB, Holbach L.

    Invest Ophthalmol Vis Sci. 2005 Apr;46(4):1275-9.PMID: 15790890 [PubMed - indexed for MEDLINE]Related articlesFree article

    11.

    Morphologic changes in chronic high-pressure experimental glaucoma in rhesus monkeys.

    Hayreh SS, Pe'er J, Zimmerman MB.

    J Glaucoma. 1999 Feb;8(1):56-71.PMID: 10084276 [PubMed - indexed for MEDLINE]Related articles

    12.

    Persisting retinal ganglion cell axons in blind atrophic human eyes.

    Cursiefen C, Holbach LM, Schlötzer-Schrehardt U, Naumann GO.

    Graefes Arch Clin Exp Ophthalmol. 2001 Feb;239(2):158-64.PMID: 11372547 [PubMed - indexed for MEDLINE]Related articles

    13.

    Deformation of the lamina cribrosa and anterior scleral canal wall in early experimental glaucoma.

    Bellezza AJ, Rintalan CJ, Thompson HW, Downs JC, Hart RT, Burgoyne CF.

    Invest Ophthalmol Vis Sci. 2003 Feb;44(2):623-37.PMID: 12556392 [PubMed - indexed for MEDLINE]Related articlesFree article

    14.

    Localization of myocilin/trabecular meshwork--inducible glucocorticoid response protein in the human eye.

    Karali A, Russell P, Stefani FH, Tamm ER.

    Invest Ophthalmol Vis Sci. 2000 Mar;41(3):729-40.PMID: 10711688 [PubMed - indexed for MEDLINE]Related articlesFree article

    15.

    Anatomic relationship between lamina cribrosa, intraocular space, and cerebrospinal fluid space.

    Jonas JB, Berenshtein E, Holbach L.

    Invest Ophthalmol Vis Sci. 2003 Dec;44(12):5189-95.PMID: 14638716 [PubMed - indexed for MEDLINE]Related articlesFree article

    16.

    Progressive ganglion cell loss and optic nerve degeneration in DBA/2J mice is variable and asymmetric.

    Schlamp CL, Li Y, Dietz JA, Janssen KT, Nickells RW.

    BMC Neurosci. 2006 Oct 3;7:66.PMID: 17018142 [PubMed - indexed for MEDLINE]Related articlesFree article

    17.

    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, Whitmore AV, Masland RH, John SW.

    J Cell Biol. 2007 Dec 31;179(7):1523-37. Epub 2007 Dec 24.PMID: 18158332 [PubMed - indexed for MEDLINE]Related articlesFree article

    18.

    [Optic nerve microcirculation. III. Lamina cribrosa]

    Fryczkowski AW.

    Klin Oczna. 1991 Feb-Mar;93(2-3):47-50. Polish. PMID: 1870291 [PubMed - indexed for MEDLINE]Related articles

    19.

    Gamma-synuclein as a marker of retinal ganglion cells.

    Surgucheva I, Weisman AD, Goldberg JL, Shnyra A, Surguchov A.

    Mol Vis. 2008 Aug 22;14:1540-8.PMID: 18728752 [PubMed - indexed for MEDLINE]Related articlesFree article

    20.

    Retrograde axonal transport obstruction of brain-derived neurotrophic factor (BDNF) and its TrkB receptor in the retina and optic nerve of American Cocker Spaniel dogs with spontaneous glaucoma.

    Iwabe S, Moreno-Mendoza NA, Trigo-Tavera F, Crowder C, García-Sánchez GA.

    Vet Ophthalmol. 2007 Nov-Dec;10 Suppl 1:12-9.PMID: 17973830 [PubMed - indexed for MEDLINE]Related articles

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