28
Views
1
CrossRef citations to date
0
Altmetric
ORIGINAL PAPER

Abnormal Electromyographic Findings in a Patient with Negative Scotopic Electroretinogram and Normal Dark Adaptation

, , , , , , & show all
Pages 1-7 | Accepted 01 Apr 2005, Published online: 26 Aug 2009

REFERENCES

  • Heckenlively J R, Weleber R G, Arden G B. Testing levels of the visual system. Principles and practice of clinical electrophysiology of vision, J R Heckenlively, G B Arden. Mosby-Year Book, St. Louis 1991; 485–493
  • Miyake Y, Yagasaki K, Horiguchi M, et al. On- and off-responses in photopic electroretinogram in complete and incomplete types of congenital stationary night blindness. Jpn J Ophthalmol 1987; 31: 81–87, [PUBMED], [INFOTRIEVE]
  • Alexander K R, Fishman G A, Peachey N S, et al. ‘On’ response defect in paraneoplastic night blindness with cutaneous malignant melanoma. Invest Ophthalmol Vis Sci 1992; 33: 477–483, [PUBMED], [INFOTRIEVE]
  • Fishman G A, Alexander K R, Milam A H, et al. Acquired unilateral night blindness associated with a negative electroretinogram waveform. Ophthalmology 1996; 103: 96–104, [PUBMED], [INFOTRIEVE], [CSA]
  • Fitzgerald K M, Cibis G W, Giambrone S A, et al. Retinal signal transmission in Duchenne muscular dystrophy: evidence for dysfunction in the photoreceptor/depolarizing bipolar cell pathway. J Clin Invest 1994; 93: 2425–2430, [PUBMED], [INFOTRIEVE], [CSA]
  • Fitzgerald K M, Cibis G W, Gettel A H, et al. ERG phenotype of a dystrophin mutation in heterozygous female carriers of Duchenne muscular dystrophy. J Med Genet 1999; 36: 316–322, [PUBMED], [INFOTRIEVE], [CSA]
  • Fitzgerald K M, Hashimoto T, Hug T E, et al. Autosomal dominant inheritance of a negative electroretinogram phenotype in three generations. Am J Ophthalmol 2001; 131: 495–502, [PUBMED], [INFOTRIEVE], [CROSSREF], [CSA]
  • Miyake Y, Yagasaki K, Horiguchi M, et al. Congenital stationary night blindness with negative electroretinogram: a new classification. Arch Ophthalmol 1986; 104: 1013–1020, [PUBMED], [INFOTRIEVE]
  • Berson E L, Lessell S. Paraneoplastic night blindness with malignant melanoma. Am J Ophthalmol 1988; 106: 307–311, [PUBMED], [INFOTRIEVE]
  • Jensen H, Warburg M, Sjo O, et al. Duchenne muscular dystrophy: negative electroretinograms and normal dark adaptation. Reappraisal of assignment of X linked incomplete congenital stationary night blindness. J Med Genet 1995; 32: 348–351, [PUBMED], [INFOTRIEVE], [CSA]
  • Tremblay F, De Becker I, Riddell D C, et al. Duchenne muscular dystrophy: negative scotopic bright-flash electroretinogram and normal dark adaptation. Can J Ophthalmol 1994; 29: 280–283, [PUBMED], [INFOTRIEVE], [CSA]
  • Sigesmund D A, Weleber R G, Pillers D M, et al. Characterization of the ocular phenotype of Duchenne and Becker muscular dystrophy. Ophthalmology 1994; 101: 856–865, [PUBMED], [INFOTRIEVE], [CSA]
  • Tremblay F, De Becker I, Dooley J M, et al. Duchenne muscular dystrophy: negative scotopic bright-flash electroretinogram but not congenital stationary night blindness. Can J Ophthalmol 1994; 29: 274–279, [PUBMED], [INFOTRIEVE], [CSA]
  • Cibis G W, Fitzgerald K M, Harris D J, et al. The effects of dystrophin gene mutations on the ERG in mice and humans. Invest Ophthalmol Vis Sci 1993; 34: 3646–3652, [PUBMED], [INFOTRIEVE], [CSA]
  • Pillers D M, Bulman D E, Weleber R G, et al. Dystrophin expression in the human retina is required for normal function as defined by electroretinography. Nat Genet 1993; 4: 82–86, [PUBMED], [INFOTRIEVE], [CROSSREF]
  • Pascual-Pascual S I, Molano J, Pascual-Castroviejo I. Electroretinogram in Duchenne/Becker muscular dystrophy. Pediatr Neurol 1998; 18: 315–320, [PUBMED], [INFOTRIEVE], [CROSSREF], [CSA]
  • Marmor M F, Arden G B, Nilsson S EG, et al. Standard for clinical electroretinography. Arch Ophthalmol 1989; 107: 816–819
  • Tian N, Slaughter M M. Correlation of dynamic responses in the ON bipolar neuron and the b-wave of the electroretinogram. Vision Res 1995; 35: 1359–1364, [PUBMED], [INFOTRIEVE], [CROSSREF], [CSA]
  • Robson J G, Frishman L J. Response linearity and kinetics of the cat retina: the bipolar cell component of the dark-adapted electroretinogram. Vis Neurosci 1995; 12: 837–850, [PUBMED], [INFOTRIEVE], [CSA]
  • Stockton R A, Slaughter M M. B-wave of the electroretinogram: a reflection of ON bipolar cell activity. J Gen Physiol 1989; 93: 101–122, [PUBMED], [INFOTRIEVE], [CROSSREF]
  • Sieving P A. Photopic ON- and OFF-pathway abnormalities in retinal dystrophies. Trans Am Ophthalmol Soc 1993; 91: 701–773, [PUBMED], [INFOTRIEVE], [CSA]
  • Knapp A G, Ariel M, Robinson F R. Analysis of vertebrate eye movements following intravitreal drug injections. I. Blockage of retinal ON-cells by 2-amino-4-phosphobutyrate eliminates optokinetic nystagmus. J Neurophysiol 1988; 60: 1010–1021, [PUBMED], [INFOTRIEVE], [CSA]
  • Iwakabe H, Katsuura G, Ishibashi C, et al. Impairment of pupillary responses and optokinetic nystagmus in the mGluR6-deficient mouse. Neuropharmacology 1997; 36: 135–143, [PUBMED], [INFOTRIEVE], [CROSSREF], [CSA]
  • Wolf J E, Arden G B. Selective magnocellular damage in melanoma-associated retinopathy: comparison with congenital stationary nightblindness. Vision Res 1996; 36: 2369–2379, [PUBMED], [INFOTRIEVE], [CROSSREF], [CSA]

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.