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Original Articles

Relative Afferent Pupillary Defects in Homonymous Visual Field Defects Caused by Stroke of the Occipital Lobe Using Pupillometer

, , , , , , , & show all
Pages 139-145 | Received 30 Apr 2017, Accepted 09 Aug 2017, Published online: 31 Aug 2017

References

  • Wernicke C. Über hemianopische pupillenreaktion. Fortschr Med 1883;1:49–53.
  • Bell RA, Thompson HS. Relative afferent pupillary defect in optic tract hemianopias. Am J Ophthalmol 1978;85:538–540. doi:10.1016/S0002-9394(14)75251-1.
  • Wilhelm H, Wilhelm B, Petersen D, Schmidt U, Schiefer U. Relative afferent pupillary defects in patients with geniculate and retrogeniculate lesions. Neuro-Ophthalmol 1996;16:219–224. doi:10.3109/01658109609044629.
  • Papageorgiou E, Ticini LF, Hardiess G, Schaeffel F, Wiethoelter H, Mallot HA, Bahlo S, Wilhelm B, Vonthein R, Schiefer U, Karnath HO. The pupillary light reflex pathway: cytoarchitectonic probabilistic maps in hemianopic patients. Neurology 2008;70:956–963. doi:10.1212/01.wnl.0000305962.93520.ed.
  • Wilhelm BJ, Wilhelm H, Moro S, Barbur JL. Pupil response components: studies in patients with Parinaud’s syndrome. Brain 2002;125:2296–2307. doi:10.1093/brain/awf232.
  • Ellis CJ. Afferent pupillary defect in pineal region tumour. J Neurol Neurosurg Psychiatry 1984;47:739–741. doi:10.1136/jnnp.47.7.739.
  • Papageorgiou E, Wermund T, Wilhelm H. Pupil perimetry demonstrates hemifield pupillary hypokinesia in a patient with a pretectal lesion causing a relative afferent pupil defect but no visual field loss. J Neuroophthalmol 2009;29:33–36. doi:10.1097/WNO.0b013e318198cb8c.
  • Jindahra P, Petrie A, Plant GT. The time course of retrograde trans-synaptic degeneration following occipital lobe damage in humans. Brain 2012;135:534–541. doi:10.1093/brain/awr324.
  • Yamashita T, Miki A, Iguchi Y, Kimura K, Maeda F, Kiryu J. Reduced retinal ganglion cell complex thickness in patients with posterior cerebral artery infarction detected using spectral-domain optical coherence tomography. Jpn J Ophthalmol 2012;56:502–510. doi:10.1007/s10384-012-0146-3.
  • Meier PG, Maeder P, Kardon RH, Borruat FX. Homonymous ganglion cell layer thinning after isolated occipital lesion: macular OCT demonstrates transsynaptic retrograde retinal degeneration. J Neuroophthalmol 2015;35:112–116.
  • Chang DS, Boland MV, Arora KS, Supakontanasan W, Chen BB, Friedman DS. Symmetry of the pupillary light reflex and its relationship to retinal nerve fiber layer thickness and visual field defect. Invest Ophthalmol Vis Sci 2013;54:5596–5601. doi:10.1167/iovs.13-12142.
  • Ozeki N, Yuki K, Shiba D, Tsubota K. Pupillographic evaluation of relative afferent pupillary defect in glaucoma patients. Br J Ophthalmol 2013;97:1538–1542. doi:10.1136/bjophthalmol-2013-303825.
  • Tatham AJ, Meira-Freitas D, Weinreb RN, Zangwill LM, Medeiros FA. Detecting glaucoma using automated pupillography. Ophthalmology 2014;121:1185–1193. doi:10.1016/j.ophtha.2013.12.015.
  • Chang DS, Arora KS, Boland MV, Supakontanasan W, Friedman DS. Development and validation of an associative model for the detection of glaucoma using pupillography. Am J Ophthalmol 2013;156:1285–1296. doi:10.1016/j.ajo.2013.07.026.
  • Takizawa G, Miki A, Maeda F, Goto K, Araki S, Ieki Y, Kiryu J, Yaoeda K. Association between a relative afferent pupillary defect using pupillography and inner retinal atrophy in optic nerve disease. Clin Ophthalmol 2015;9:1895–1903. doi:10.2147/OPTH.S91278.
  • Satou T, Goseki T, Asakawa K, Ishikawa H, Shimizu K. Effects of age and sex on values obtained by RAPDx® pupillometer, and determined the standard values for detecting relative afferent pupillary defect. Transl Vis Sci Technol 2016;5:18. doi:10.1167/tvst.5.2.18.
  • Brindley GS, Gautier-Smith PC, Lewin W. Cortical blindness and the functions of the non-geniculate fibres of the optic tracts. J Neurol Neurosurg Psychiatry 1969;32:259–2647. doi:10.1136/jnnp.32.4.259.
  • Cibis GW, Campos EC, Aulhorn E. Pupillary hemiakinesia in suprageniculate lesions. Arch Ophthalmol 1975;93:1322–1327. doi:10.1001/archopht.1975.01010020954004.
  • Hamann KU, Hellner KA, Müller-Jensen A, Zschocke S. Videopupillographic and VER investigations in patients with congenital and acquired lesions of the optic radiation. Ophthalmologica 1979;178:348–356. doi:10.1159/000308846.
  • Kardon RH. Pupil perimetry. Curr Opin Ophthalmol 1992;3:565–570. doi:10.1097/00055735-199210000-00002.
  • Yoshitomi T, Matsui T, Tanakadate A, Ishikawa S. Comparison of thresholdvisual perimetry and objective pupil perimetry in clinical patients. J Neuroophthalmol 1999;19:89–99. doi:10.1097/00041327-199906000-00003.
  • Tychsen L, Hoyt WF. Occipital lobe dysplasia: magnetic resonance findings in two cases of isolated congenital hemianopia. Arch Ophthalmol 1985;103:680–682. doi:10.1001/archopht.1985.01050050072021.
  • Tychsen L, Hoyt WF. Relative afferent pupillary defect in congenital occipital hemianopia. Am J Ophthalmol 1985;100:345–346. doi:10.1016/0002-9394(85)90818-9.
  • Goto K, Miki A, Yamashita T, Araki S, Takizawa G, Nakagawa M, Ieki Y, Kiryu J. Sectoral analysis of the retinal nerve fiber layer thinning and its association with visual field loss in homonymous hemianopia caused by post-geniculate lesions using spectral-domain optical coherence tomography. Graefes Arch Clin Exp Ophthalmol 2016;254:745–756. doi:10.1007/s00417-015-3181-1.
  • Yamashita T, Miki A, Goto K, Araki S, Takizawa G, Ieki Y, Kiryu J, Tabuchi A, Iguchi Y, Kimura K, Yagita Y. Retinal ganglion cell atrophy in homonymous hemianopia due to acquired occipital lesions observed using cirrus High-Definition-OCT. J Ophthalmol 2016;2016:2394957. doi:10.1155/2016/2394957.
  • Mitchell JR, Oliveira C, Tsiouris AJ, Dinkin MJ. Corresponding ganglion cell atrophy in patients with postgeniculate homonymous visual field loss. J Neuroophthalmol 2015;35:353–359. doi:10.1097/WNO.0000000000000268.
  • Kawasaki A, Moore P, Kardon RH. Long-term fluctuation of relative afferent pupillary defect in subjects with normal visual function. Am J Ophthalmol 1996;122:875–882. doi:10.1016/S0002-9394(14)70385-X.
  • Cohen LM, Rosenberg MA, Tanna AP, Volpe NJ. A novel computerized portable pupillometer detects and quantifies relative afferent pupillary defects. Curr Eye Res 2015;40:1120–1127. doi:10.3109/02713683.2014.980007.
  • Goto K, Miki A, Yamashita T, Araki S, Takizawa G, Mizukawa K, Ieki Y, Kiryu J. Quantitative analysis of macular inner retinal layer using swept-source optical coherence tomography in patients with optic tract syndrome. J Opthalmol 2017;2017:3596587.