Homonymous Hemianopia and Vision Restoration Therapy

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      References

        • Han L.
        • Law-Gibson D.
        • Reding M.
        Key neurological impairments influence function-related group outcomes after stroke.
        Stroke. 2002; 33: 1920-1924
        • Patel A.T.
        • Duncan P.W.
        • Lai S.M.
        • et al.
        The relation between impairments and functional outcomes poststroke.
        Arch Phys Med Rehabil. 2000; 81: 1357-1363
        • Pambakian A.
        • Currie J.
        • Kennard C.
        Rehabilitation strategies for patients with homonymous visual field defects.
        J Neuroophthalmol. 2005; 25: 136-142
        • Pambakian A.L.
        • Kennard C.
        Can visual function be restored in patients with homonymous hemianopia?.
        Br J Ophthalmol. 1997; 81: 324-328
        • Huxlin K.R.
        • Williams J.M.
        • Price T.
        A neurochemical signature of visual recovery after extrastriate cortical damage in the adult cat.
        J Comp Neurol. 2008; 508: 45-61
        • Huxlin K.R.
        • Pasternak T.
        Training-induced recovery of visual motion perception after extrastriate cortical damage in the adult cat.
        Cereb Cortex. 2004; 14: 81-90
        • Dilks D.D.
        • Serences J.T.
        • Rosenau B.J.
        • et al.
        Human adult cortical reorganization and consequent visual distortion.
        J Neurosci. 2007; 27: 9585-9594
        • Huxlin K.R.
        Perceptual plasticity in damaged adult visual systems.
        Vision Res. 2008; 48: 2154-2166
        • Kasten E.
        • Wüst S.
        • Behrens-Baumann W.
        • et al.
        Computer-based training for the treatment of partial blindness.
        Nat Med. 1998; 4: 1083-1087
        • Strand T.
        • Asplund K.
        • Eriksson S.
        • et al.
        Stroke unit care–who benefits? Comparisons with general medical care in relation to prognostic indicators on admission.
        Stroke. 1986; 17: 377-381
        • Minematsu K.
        Acute ischemic stroke.
        Rinsho Shinkeigaku. 2003; 43 ([in Japanese]): 796-798
        • Turner-Stokes L.
        • Pick A.
        • Nair A.
        • et al.
        Multi-disciplinary rehabilitation for acquired brain injury in adults of working age.
        Cochrane Database Syst Rev. 2015; 12 (CD004170)
        • Das A.
        • Huxlin K.R.
        New approaches to visual rehabilitation for cortical blindness: outcomes and putative mechanisms.
        Neuroscientist. 2010; 16: 374-387
        • Goodwin D.
        Homonymous hemianopia: challenges and solutions.
        Clin Ophthalmol. 2014; 8: 1919-1927
        • Zhang X.
        • Kedar S.
        • Lynn M.J.
        • et al.
        Homonymous hemianopias: clinical-anatomic correlations in 904 cases.
        Neurology. 2006; 66: 906-910
        • Zhang X.
        • Kedar S.
        • Lynn M.J.
        • et al.
        Natural history of homonymous hemianopia.
        Neurology. 2006; 66: 901-905
        • Raninen A.
        • Vanni S.
        • Hyvärinen L.
        • et al.
        Temporal sensitivity in a hemianopic visual field can be improved by long-term training using flicker stimulation.
        J Neurol Neurosurg Psychiatr. 2007; 78: 66-73
        • Huxlin K.R.
        • Martin T.
        • Kelly K.
        • et al.
        Perceptual relearning of complex visual motion after V1 damage in humans.
        J Neurosci. 2009; 29: 3981-3991
        • Cowey A.
        • Weiskrantz L.
        A perimetric study of visual field defects in monkeys.
        Q J Exp Psychol. 1963; 15: 91-115
        • Mohler C.W.
        • Wurtz R.H.
        Role of striate cortex and superior colliculus in visual guidance of saccadic eye movements in monkeys.
        J Neurophysiol. 1977; 40: 74-94
        • Schiller P.H.
        The effects of V4 and middle temporal (MT) area lesions on visual performance in the rhesus monkey.
        Vis Neurosci. 1993; 10: 717-746
        • Merigan W.H.
        • Pham H.A.
        V4 lesions in macaques affect both single- and multiple-viewpoint shape discriminations.
        Vis Neurosci. 1998; 15: 359-367
        • Poppelreuter W.
        Die psychischen Schädingungen durch Kopfschuss im Kriege 1914/16: mit besonderer Berücksichtigung der pathopsychologischen, pädagogischen, gewerblichen und sozialen Beziehungen. Band I: Die Störungen der niederen un höheren Sehleistungen durch Verletzungen des Okzipitalhirns.
        L. Voss, Leipzig (Germany)1917
        • Luria A.R.
        Restoration of function after brain injury.
        Macmillan, Oxford1963
        • Zihl J.
        • Cramon von D.
        Visual field recovery from scotoma in patients with postgeniculate damage. A review of 55 cases.
        Brain. 1985; 108: 335-365
        • Bach-y-Rita P.
        Controlling variables eliminates hemianopsia rehabilitation results.
        Behav Brain Sci. 1983; 6: 448
        • Pelak V.S.
        • Dubin M.
        • Whitney E.
        Homonymous hemianopia: a critical analysis of optical devices, compensatory training, and novavision.
        Curr Treat Options Neurol. 2007; 9: 41-47
        • Zihl J.
        Recovery of visual functions in patients with cerebral blindness. Effect of specific practice with saccadic localization.
        Exp Brain Res. 1981; 44: 159-169
        • Kerkhoff G.
        Neurovisual rehabilitation: recent developments and future directions.
        J Neurol Neurosurg Psychiatr. 2000; 68: 691-706
        • Rossi P.W.
        • Kheyfets S.
        • Reding M.J.
        Fresnel prisms improve visual perception in stroke patients with homonymous hemianopia or unilateral visual neglect.
        Neurology. 1990; 40: 1597-1599
        • Peli E.
        Field expansion for homonymous hemianopia by optically induced peripheral exotropia.
        Optom Vis Sci. 2000; 77: 453-464
        • Cowey A.
        Perimetric study of field defects in monkeys after cortical and retinal ablations.
        Q J Exp Psychol. 1967; 19: 232-245
        • Zihl J.
        Zur Behandlung von Patienten mit homonymen Gesichtsfeldstörungen.
        Z Neuropsychol. 1990; 2: 95-101
        • Horton J.C.
        Disappointing results from nova vision's visual restoration therapy.
        Br J Ophthalmol. 2005; 89: 1-2
        • Schreiber A.
        • Vonthein R.
        • Reinhard J.
        • et al.
        Effect of visual restitution training on absolute homonymous scotomas.
        Neurology. 2006; 67: 143-145
        • Reinhard J.
        • Schreiber A.
        • Schiefer U.
        • et al.
        Does visual restitution training change absolute homonymous visual field defects? A fundus controlled study.
        Br J Ophthalmol. 2005; 89: 30-35
        • Sabel B.A.
        • Kenkel S.
        • Kasten E.
        Vision restoration therapy.
        Br J Ophthalmol. 2005; 89: 522-524
        • Sabel B.A.
        • Kenkel S.
        • Kasten E.
        Vision restoration therapy (VRT) efficacy as assessed by comparative perimetric analysis and subjective questionnaires.
        Restor Neurol Neurosci. 2004; 22: 399-420
        • Horton J.C.
        Vision restoration therapy: confounded by eye movements.
        Br J Ophthalmol. 2005; 89: 792-794
        • Sabel B.A.
        Vision restoration therapy and raising red flags too early.
        Br J Ophthalmol. 2006; 90: 659-660
        • Kasten E.
        • Bunzenthal U.
        • Sabel B.A.
        Visual field recovery after vision restoration therapy (VRT) is independent of eye movements: an eye tracker study.
        Behav Brain Res. 2006; 175: 18-26
        • Mueller I.
        • Mast H.
        • Sabel B.A.
        Recovery of visual field defects: a large clinical observational study using vision restoration therapy.
        Restor Neurol Neurosci. 2007; 25: 563-572
        • Sabel B.A.
        • Gudlin J.
        Vision restoration training for glaucoma: a randomized clinical trial.
        JAMA Ophthalmol. 2014; 132: 381-389
        • Roth T.
        • Sokolov A.N.
        • Messias A.
        • et al.
        Comparing explorative saccade and flicker training in hemianopia: a randomized controlled study.
        Neurology. 2009; 72: 324-331
        • Plow E.B.
        • Obretenova S.N.
        • Halko M.A.
        • et al.
        Combining visual rehabilitative training and noninvasive brain stimulation to enhance visual function in patients with hemianopia: a comparative case study.
        PM R. 2011; 3: 825-835
        • Miller N.R.
        • Subramanian P.S.
        Should visual restoration therapy be used in patients with visual field loss?.
        J Neuroophthalmol. 2015; 35: 319-322