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Journal Abstract Search


175 related items for PubMed ID: 21444653

  • 21. Risk of optic pathway glioma in children with neurofibromatosis type 1 and optic nerve tortuosity or nerve sheath thickening.
    Levin MH, Armstrong GT, Broad JH, Zimmerman R, Bilaniuk LT, Feygin T, Li Y, Liu GT, Fisher MJ.
    Br J Ophthalmol; 2016 Apr; 100(4):510-4. PubMed ID: 26294105
    [Abstract] [Full Text] [Related]

  • 22. Can screening for optic nerve gliomas in patients with neurofibromatosis type I be performed with visual-evoked potential testing?
    Wolsey DH, Larson SA, Creel D, Hoffman R.
    J AAPOS; 2006 Aug; 10(4):307-11. PubMed ID: 16935228
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  • 23. Evaluation of traumatic optic neuropathy in patients with optic canal fracture using diffusion tensor magnetic resonance imaging: a preliminary report.
    Yang QT, Fan YP, Zou Y, Kang Z, Hu B, Liu X, Zhang GH, Li Y.
    ORL J Otorhinolaryngol Relat Spec; 2011 Aug; 73(6):301-7. PubMed ID: 21952108
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  • 24. Lens-injury-stimulated axonal regeneration throughout the optic pathway of adult rats.
    Fischer D, Heiduschka P, Thanos S.
    Exp Neurol; 2001 Dec; 172(2):257-72. PubMed ID: 11716551
    [Abstract] [Full Text] [Related]

  • 25. Screening and diagnosis of optic pathway gliomas in children with neurofibromatosis type 1 by using sweep visual evoked potentials.
    Chang BC, Mirabella G, Yagev R, Banh M, Mezer E, Parkin PC, Westall CA, Buncic JR.
    Invest Ophthalmol Vis Sci; 2007 Jun; 48(6):2895-902. PubMed ID: 17525226
    [Abstract] [Full Text] [Related]

  • 26. Comparison of pattern visual-evoked potentials to perimetry in the detection of visual loss in children with optic pathway gliomas.
    Kelly JP, Weiss AH.
    J AAPOS; 2006 Aug; 10(4):298-306. PubMed ID: 16935227
    [Abstract] [Full Text] [Related]

  • 27. Visual function assessed by visually evoked potentials in optic pathway low-grade gliomas with and without neurofibromatosis type 1.
    Dotto PF, Berezovsky A, Cappellano AM, da Silva NS, Sacai PY, Silva FAB, Fernandes AG, Rocha DM, Salomão SR.
    Doc Ophthalmol; 2018 Jun; 136(3):177-189. PubMed ID: 29766345
    [Abstract] [Full Text] [Related]

  • 28. Visual outcome following chemotherapy for progressive optic pathway gliomas.
    Shofty B, Ben-Sira L, Freedman S, Yalon M, Dvir R, Weintraub M, Toledano H, Constantini S, Kesler A.
    Pediatr Blood Cancer; 2011 Sep; 57(3):481-5. PubMed ID: 21241008
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  • 29. Visual system involvement in patients with Friedreich's ataxia.
    Fortuna F, Barboni P, Liguori R, Valentino ML, Savini G, Gellera C, Mariotti C, Rizzo G, Tonon C, Manners D, Lodi R, Sadun AA, Carelli V.
    Brain; 2009 Jan; 132(Pt 1):116-23. PubMed ID: 18931386
    [Abstract] [Full Text] [Related]

  • 30. Relationship of optic nerve and brain conventional and non-conventional MRI measures and retinal nerve fiber layer thickness, as assessed by OCT and GDx: a pilot study.
    Frohman EM, Dwyer MG, Frohman T, Cox JL, Salter A, Greenberg BM, Hussein S, Conger A, Calabresi P, Balcer LJ, Zivadinov R.
    J Neurol Sci; 2009 Jul 15; 282(1-2):96-105. PubMed ID: 19439327
    [Abstract] [Full Text] [Related]

  • 31. NGF eye-drops topical administration in patients with retinitis pigmentosa, a pilot study.
    Falsini B, Iarossi G, Chiaretti A, Ruggiero A, Manni L, Galli-Resta L, Corbo G, Abed E.
    J Transl Med; 2016 Jan 09; 14():8. PubMed ID: 26748988
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  • 32. A double-blind, randomized trial of IV immunoglobulin treatment in acute optic neuritis.
    Roed HG, Langkilde A, Sellebjerg F, Lauritzen M, Bang P, Mørup A, Frederiksen JL.
    Neurology; 2005 Mar 08; 64(5):804-10. PubMed ID: 15753413
    [Abstract] [Full Text] [Related]

  • 33. Subclinical visual involvement in multiple sclerosis: a study by MRI, VEPs, frequency-doubling perimetry, standard perimetry, and contrast sensitivity.
    Sisto D, Trojano M, Vetrugno M, Trabucco T, Iliceto G, Sborgia C.
    Invest Ophthalmol Vis Sci; 2005 Apr 08; 46(4):1264-8. PubMed ID: 15790888
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  • 34. Eye drop NGF administration promotes the recovery of chemically injured cholinergic neurons of adult mouse forebrain.
    Di Fausto V, Fiore M, Tirassa P, Lambiase A, Aloe L.
    Eur J Neurosci; 2007 Nov 08; 26(9):2473-80. PubMed ID: 17970722
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  • 35. Temporary conduction block of optic nerve after retrobulbar anesthesia.
    Verma L, Arora R, Kumar A.
    Ophthalmic Surg; 1990 Feb 08; 21(2):109-12. PubMed ID: 2330189
    [Abstract] [Full Text] [Related]

  • 36. Visual outcome in optic nerve injury patients without initial light perception.
    Agarwal A, Mahapatra AK.
    Indian J Ophthalmol; 1999 Dec 08; 47(4):233-6. PubMed ID: 10892479
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  • 37. Retinal atrophy correlates with fMRI response in patients with recovered optic neuritis.
    Fuglø D, Kallenbach K, Tsakiri A, Simonsen H, Sander B, Hansen AE, Rostrup E, Frederiksen J, Larsson HB.
    Neurology; 2011 Aug 16; 77(7):645-51. PubMed ID: 21813786
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  • 38. Evaluation of neuroprotective qualities of brimonidine during LASIK.
    McCarty TM, Hardten DR, Anderson NJ, Rosheim K, Samuelson TW.
    Ophthalmology; 2003 Aug 16; 110(8):1615-25. PubMed ID: 12917182
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  • 39. The clinical features, MRI findings, and outcome of optic neuritis in children.
    Wilejto M, Shroff M, Buncic JR, Kennedy J, Goia C, Banwell B.
    Neurology; 2006 Jul 25; 67(2):258-62. PubMed ID: 16864818
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  • 40. Clinical analysis of the incidence and the treatment of pediatric cataract patients with optic-nerve maldevelopment.
    Lv C, Xiao W.
    Eye Sci; 2014 Mar 25; 29(1):12-9. PubMed ID: 26016060
    [Abstract] [Full Text] [Related]


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