Neuroprotection for optic nerve disorders
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[1] G. Holló. Pharmacological Neuroprotection for Glaucoma , 2012, Drugs.
[2] James V. Jester,et al. High resolution three-dimensional reconstruction of the collagenous matrix of the human optic nerve head , 2010, Brain Research Bulletin.
[3] H. Yip,et al. Combined effect of brain-derived neurotrophic factor and LINGO-1 fusion protein on long-term survival of retinal ganglion cells in chronic glaucoma , 2009, Neuroscience.
[4] V. Parisi,et al. Experimental and clinical evidence of neuroprotection by nerve growth factor eye drops: Implications for glaucoma , 2009, Proceedings of the National Academy of Sciences.
[5] M. Vidal-Sanz,et al. Effects of different neurotrophic factors on the survival of retinal ganglion cells after a complete intraorbital nerve crush injury: a quantitative in vivo study. , 2009, Experimental eye research.
[6] David Piwnica-Worms,et al. Single-cell imaging of retinal ganglion cell apoptosis with a cell-penetrating, activatable peptide probe in an in vivo glaucoma model , 2009, Proceedings of the National Academy of Sciences.
[7] Neville N. Osborne. Recent clinical findings with memantine should not mean that the idea of neuroprotection in glaucoma is abandoned , 2009, Acta ophthalmologica.
[8] G. Haddad,et al. Genetic and pharmacological inhibition of JNK ameliorates hypoxia-induced retinopathy through interference with VEGF expression , 2009, Proceedings of the National Academy of Sciences.
[9] M. Araie,et al. Edaravone, a Free Radical Scavenger, Protects against Retinal Damage in Vitro and in Vivo , 2009, Journal of Pharmacology and Experimental Therapeutics.
[10] J. Morrison,et al. Neurotrophin roles in retinal ganglion cell survival: lessons from rat glaucoma models. , 2009, Experimental eye research.
[11] C. L. Schlamp,et al. Mouse models of retinal ganglion cell death and glaucoma. , 2009, Experimental eye research.
[12] R. Weinreb,et al. Experimental detection of retinal ganglion cell damage in vivo. , 2009, Experimental eye research.
[13] M. Wax,et al. Immunoregulation of retinal ganglion cell fate in glaucoma. , 2009, Experimental eye research.
[14] A. Di Polo,et al. Excitotoxic Death of Retinal Neurons In Vivo Occurs via a Non-Cell-Autonomous Mechanism , 2009, The Journal of Neuroscience.
[15] Jiankun Cui,et al. Neuroprotection by the NR3A Subunit of the NMDA Receptor , 2009, The Journal of Neuroscience.
[16] A. Di Polo,et al. Inhibition of p75NTR in glia potentiates TrkA-mediated survival of injured retinal ganglion cells , 2009, Molecular and Cellular Neuroscience.
[17] M. C. Leske,et al. Ocular perfusion pressure and glaucoma: clinical trial and epidemiologic findings , 2009, Current opinion in ophthalmology.
[18] Y. Kim,et al. Neuroprotective effect of transpupillary thermotherapy in the optic nerve crush model of the rat , 2009, Eye.
[19] F. Gonzalez-Lima,et al. Methylene Blue Provides Behavioral and Metabolic Neuroprotection Against Optic Neuropathy , 2009, Neurotoxicity Research.
[20] M. Kahook,et al. Primary open-angle glaucoma: diagnostic approaches and management. , 2009, Journal of the National Medical Association.
[21] J. Caprioli,et al. Redox proteins thioredoxin 1 and thioredoxin 2 support retinal ganglion cell survival in experimental glaucoma , 2009, Gene Therapy.
[22] F. Hallböök,et al. Immediate upregulation of proteins belonging to different branches of the apoptotic cascade in the retina after optic nerve transection and optic nerve crush. , 2009, Investigative ophthalmology & visual science.
[23] F Gonzalez-Lima,et al. Neuroprotective Effects of Near-Infrared Light in an In Vivo Model of Mitochondrial Optic Neuropathy , 2008, The Journal of Neuroscience.
[24] L. Schmetterer,et al. Diurnal fluctuation of ocular blood flow parameters in patients with primary open-angle glaucoma and healthy subjects , 2008, British Journal of Ophthalmology.
[25] David J. Calkins,et al. Induced Autoimmunity to Heat Shock Proteins Elicits Glaucomatous Loss of Retinal Ganglion Cell Neurons via Activated T-Cell-Derived Fas-Ligand , 2008, The Journal of Neuroscience.
[26] P. Mackenzie,et al. How does lowering of intraocular pressure protect the optic nerve? , 2008, Survey of ophthalmology.
[27] C. Lucchinetti,et al. Aquaporin-4–binding autoantibodies in patients with neuromyelitis optica impair glutamate transport by down-regulating EAAT2 , 2008, The Journal of experimental medicine.
[28] A. Di Polo,et al. α2-Macroglobulin Is a Mediator of Retinal Ganglion Cell Death in Glaucoma* , 2008, Journal of Biological Chemistry.
[29] S. Viswanathan,et al. Effects of optic nerve injury, glaucoma, and neuroprotection on the survival, structure, and function of ganglion cells in the mammalian retina , 2008, The Journal of physiology.
[30] Jian Cai,et al. Phosphorylation-dependent interaction with 14-3-3 in the regulation of bad trafficking in retinal ganglion cells. , 2008, Investigative ophthalmology & visual science.
[31] R. Funk,et al. Neurodegenerative Diseases of the Retina and Potential for Protection and Recovery , 2008, Current neuropharmacology.
[32] T. Shearer,et al. The role of calcium-activated protease calpain in experimental retinal pathology. , 2008, Survey of ophthalmology.
[33] Wutian Wu,et al. Blocking LINGO-1 function promotes retinal ganglion cell survival following ocular hypertension and optic nerve transection. , 2008, Investigative ophthalmology & visual science.
[34] R. Kardon,et al. Neuro-ophthalmic Sarcoidosis: The University of Iowa Experience , 2008, Seminars in ophthalmology.
[35] C. L. Schlamp,et al. Involvement of the Bcl2 gene family in the signaling and control of retinal ganglion cell death. , 2008, Progress in brain research.
[36] N. Cooper,et al. The relationship between neurotrophic factors and CaMKII in the death and survival of retinal ganglion cells. , 2008, Progress in brain research.
[37] E. Fazzi,et al. Rational basis for the development of coenzyme Q10 as a neurotherapeutic agent for retinal protection. , 2008, Progress in brain research.
[38] Pablo Villoslada,et al. Diagnostic accuracy of retinal abnormalities in predicting disease activity in MS , 2007, Neurology.
[39] Joan W. Miller,et al. Tumor Necrosis Factor-α Mediates Oligodendrocyte Death and Delayed Retinal Ganglion Cell Loss in a Mouse Model of Glaucoma , 2006, The Journal of Neuroscience.
[40] Young H. Kwon,et al. Retinal synthesis and deposition of complement components induced by ocular hypertension. , 2006, Experimental eye research.
[41] Y. Kitaoka,et al. Pro‐apoptotic role of c‐Jun in NMDA‐induced neurotoxicity in the rat retina , 2006, Journal of neuroscience research.
[42] J. Danias,et al. Complement component 1Q (C1Q) upregulation in retina of murine, primate, and human glaucomatous eyes. , 2006, Investigative ophthalmology & visual science.
[43] S. Brodie,et al. Characterization of retinal damage in the episcleral vein cauterization rat glaucoma model. , 2006, Experimental eye research.
[44] R. Casson. Possible role of excitotoxicity in the pathogenesis of glaucoma , 2006, Clinical & experimental ophthalmology.
[45] R. Rosenstein,et al. Effect of glaucoma on the retinal glutamate/glutamine cycle activity , 2005, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[46] M. Saleh,et al. Axonal Dynactin p150Glued Transports Caspase-8 to Drive Retrograde Olfactory Receptor Neuron Apoptosis , 2005, The Journal of Neuroscience.
[47] S. Resnikoff,et al. Global data on visual impairment in the year 2002. , 2004, Bulletin of the World Health Organization.
[48] K. Mader,et al. Dual mode of signalling of the axotomy reaction: retrograde electric stimulation or block of retrograde transport differently mimic the reaction of motoneurons to nerve transection in the rat brainstem. , 2004, Journal of neurotrauma.
[49] J. Diamond,et al. Invulnerability of retinal ganglion cells to NMDA excitotoxicity , 2004, Molecular and Cellular Neuroscience.
[50] L. Levin,et al. Optic neuritis and multiple sclerosis. , 2003, Archives of ophthalmology.
[51] L. Levin,et al. Retinal ganglion cell disorders: types and treatments , 2002, Progress in Retinal and Eye Research.
[52] H. Quigley,et al. Translimbal laser photocoagulation to the trabecular meshwork as a model of glaucoma in rats. , 2002, Investigative ophthalmology & visual science.
[53] D. Rosenbaum,et al. Functional and Morphologic Comparison of Two Methods to Produce Transient Retinal Ischemia in the Rat , 2001, Journal of neuro-ophthalmology : the official journal of the North American Neuro-Ophthalmology Society.
[54] A. Posada,et al. Relationships between neuronal death and the cellular redox status. Focus on the developing nervous system , 1999, Progress in Neurobiology.
[55] R. Ratan,et al. Cell Death and Diseases of the Nervous System , 1999, Humana Press.
[56] P. Clarke. Apoptosis versus necrosis: How valid a dichotomy for neurons ? , 1999 .
[57] P. Clarke,et al. Early retrograde effects of blocking axoplasmic transport in the axons of developing neurons. , 1997, Brain research. Developmental brain research.
[58] P. Singer,et al. Blockade of retrograde axonal transport delays the onset of metabolic and morphologic changes induced by axotomy , 1982, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[59] I. Morgan. Intraocular colchicine selectively destroys immature ganglion cells in chicken retina , 1981, Neuroscience Letters.