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Original Article

Step-like field defects in Gilles de la Tourette syndrome

Changes during a day

, &
Pages 307-317 | Accepted 05 Mar 1991, Published online: 08 Jul 2009

References

  • Enoch J M, Itzhaki A, Lakshminarayanan V, Comerford U P, Lieberman M, Lowe T. Gilles de la Tourette syndrome: Visual effects. Neuro-Ophthalmology 1988; 8: 251–257
  • Enoch J M, Itzhaki A, Lakshminarayanan V, Comerford P, Lieberman M. Visual field defects detected in patients with Gilles de la Tourette syndrome: Preliminary report. Int Ophthalmol 1989; 13: 331–344
  • Khamar B M, Enoch J M, Lakshminarayanan V. Step manifestations and sensitivity changes in Gilles de la Tourette syndrome. Neuro-Ophthalmology 1990; 10: 293–298
  • Enoch J M, Khamar B M, Lakshminarayanan V. An analysis of step-like visual field defects in Gilles de la Tourette syndrome. Neuro-Ophthalmology 1990; 10: 299–309
  • Enoch J M, Khamar B M, Lakshminarayanan V. Static and kinetic perimetric field defects in Gilles de la Tourette syndrome: Quantifying step-like visual field defects. Clin Vision Sci 1991, in press
  • Enoch J M, Khamar B M, Lakshminarayanan V. Step-like visual field defects in Gilles de la Tourette's syndrome - Effect of duration (one year). Int Ophthalmol 1990, (submitted)
  • Enoch J M, Khamar B M, Lakshminarayanan V. Fluctuating field defects - a preliminary report. Neuro-Ophthalmology 1990; 10: 311–314
  • Fankhauser F, Enoch J M. The effects of blur upon perimetric thresholds. Arch Ophthalmol 1962; 68: 240–251
  • Ikeda H, Priest T D, Robins J, Wakakuwa K. Silent dopaminergic synapse at feline retinal ganglion cells. Clin Vision Sci 1986; 1: 25–38
  • Kurlan R. Tourette's syndrome: current concepts. Neurology 1989; 39: 1625–1630
  • Ehinger B. Neurotransmitters systems in the retina. Retina 1982; 2: 305–321
  • Dowling J E, Ehinger B. Synaptic organization of the amino containing interplexiform cells of the goldfish and cebus monkey retina. Science 1975; 188: 270–273
  • Masland R H. The functional architecture of the retina. Sci Am 1986; 255: 102–111
  • Frederick J M, Rayborn M E, Laties A M, Lam D MK, Hollyfield J G. Dopaminergic neurons in the human retina. J Comp Neurol 1982; 210: 65–79
  • Marinani A P, Hokoc J M. Two types of tyrosine hydroxylase-immunoreactive amacrine cell in the rhesus monkey retina. J Comp Neurol 1988; 276: 81–91
  • Zarbin M A, Wamsley J K, Palacios J M, Kuhar M J. Autoradiographic localization of high affinity GABA, benzodiazepine, dopaminergic adrenergic and muscarine cholinergic receptors in the rat, monkey and human retina. Brain Res 1986; 374: 75–92
  • Zucker C L, Dowling J E. Centrifugal fibers synapse on dopaminergic interplexiform cells in the teleost retina. Nature 1987; 330: 166–168
  • Wolter J R. Further evidence for the existence of centrifugal nerve fibers in human optic nerve and retina. Structure of the Eye, G K Smelser. Academic Press, New York 1961; 126–129
  • Wolter J R. The centrifugal nerves in the human optic tract, chiasm, optic nerve and retina. Trans Am Ophthalmol Soc 1965; 63: 678–707
  • Wolter J R. Centrifugal nerve fibers in the adult human optic nerve: 16 days after enucleation. Trans Am Ophthalmol Soc 1978; 76: 140–152
  • Honrubia F M, Elliot J H. Efferent innervation of the retina. I. Morphologic study of the human retina. Arch Ophthalmol 1968; 80: 98–103
  • Sacks J G, Lindenberg R. Efferent nerve fibers in the anterior visual pathways in bilateral congenital cystic eyeballs. Am J Ophthalmol 1969; 68: 691–695
  • Bons M P. Demonstration of centrifugal fibers in the optic chiasma and optic nerves in the rat after lesions of the suprachiasmatic nucleus. CR Soc Biol 1987; 181: 274–281
  • Moore R Y. Organization and function of central nervous system circadian oscillator: the suprachiasmatic hypothalamonucleus. Fed Proc 1983; 42: 2783–2787
  • Rusak B, Zucker I. Neural regulation of circadian rhythms. Physiol Rev 1979; 59: 449–526
  • Kawamura H, Ibuka M. The search for circadian rhythm pacemaker in the light of lesion experiments. Chronobiologia 1978; 5: 69–94
  • Kawamura H, Inoue S T. Circadian rhythm in a hypothalamic island containing the suprachiasmatic nucleus. Biological Rhythms and their Central Mechanisms, M Suda, O Hayashi, H Nakagawa. Elsevier/North Holland Biomedical Press, Amsterdam 1979; 335–341
  • Mishino H, Koizumi K, McBrooks C. The role of the suprachiasmatic nuclei of the hypothalamus in the production of circadian rhythm. Brain Res 1976; 112: 45–49

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