14
Views
14
CrossRef citations to date
0
Altmetric
Original Article

The Effects of External Picotesla Range Magnetic Fields on the EEG in Parkinson's Disease

&
Pages 85-96 | Received 01 Oct 1992, Published online: 07 Jul 2009

References

  • Anton-Tay F. Melatonin: effects on brain function. Advances in Biochemical Psychopharmacology 1974; 11: 315–324
  • Anton-Tay F., Sepulveda J., Gonzalez S. Increase of brain pyridoxal phosphokinase activity following melatonin administration. Life Sciences 1970; 9: 1283–1288
  • Anton-Tay F., Diaz J.L., Femandez-Guardiola A. On the effects of melatonin upon human brain. Its possible therapeutic implications. Life Sciences 1971; 10: 841–850
  • Barchas J., Da Costa F., Spector S. Acute pharmacology of melatonin. Nature 1967; 214: 919–920
  • Bradbury A.J., Kelly M.E., Smith J.A. Melatonin action in the mid-brain can regulate dopamine function both behaviourally and biochemically. The pineal gland: endocrine aspects, G.M. Brown, S.D. Wainwright. Pergamon Press., Oxford 1985; 327–332
  • Brazier M. A. B. The electrical activity of the nervous system. The Williams and Wilkins Company., Baltimore 1968
  • Burton S., Daya S., Potgieter B. Melatonin modulates apomorphine-induced rotational behaviour. Experientia 1991; 47: 466–469
  • Cassone V.M. Effects of melatonin on vertebrate circadian system. Trends in Neuroscience 1990; 13: 457–463
  • Cotzias G.C., Tang L.C., Miller S.T., Ginos J.Z. Melatonin and abnormal movement induced by L-dopa in mice. Science 1971; 173: 450–452
  • Cremer-Bartels G., Krause K., Kuchle H.J. Influence of low magnetic-field-strength variations on the retina and pineal gland of quail and humans. Graefe's Archives of Clinical and Experimental Ophthalmology 1983; 220: 248–252
  • Demaine C., Semm P. The avian pineal gland as an independent magnetic sensor. Neuroscience Letters 1985; 62: 119–122
  • Demaine C., Semm P. Magnetic fields abolish nychthemeral rhythmicity of responses of Purkinje cells to the pineal hormone melatonin in the pigeon's cerebellum. Neuroscience Letters 1986; 72: 158–162
  • Dubocovich M.L. Melatonin as a potent modulator of dopamine release in the retina. Nature 1983; 306: 782–784
  • Fertl E., Auff E., Doppelbauer A., Waldhauser F. Circadian secretion pattern of melatonin in Parkinson's disease. Journal of Neural Transmission 1991; 3: 41–47
  • Gauthier S., Quesney L.F. Assessment of cortical dopaminergic activity in Parkinson's disease by EEG. Advances in neurology, R.G. Hassler, J.F. Christ. Raven Press., New York 1986; 40: 399–402
  • Guyton A.C. Basic human neurophysiology. W. B. Saunders., Philadelphia 1981; 181–185
  • Hughes J.R. The EEG in patients at different ages without organic cerebral disease. Electroencephalography and Clinical Neurophysiology 1977; 42: 776–784
  • Kiloh L.G., McComas A.J., Osselton J.W., Upton A. R. M. Clinical electroencephalography. Butterworths., London 1981
  • Korczyn A.D., Inzelberg R., Treves T., Neufeld M., Reider I., Rabey P.M. Dementia of Parkinson's disease. Advances in Neurology, M.D. Yahr, K.J. Bergmann. Raven Press., New York 1986; 399–403
  • Marczynski T.J., Yamaguchi N., Ling G.M., Grodzinska L. Sleep induced by the administration of melatonin (5-methoxy-N-acetyltryptamine) to the hypothalamus in unrestrained cats. Experientia 1964; 20: 435–436
  • Olcese J., Reuss S., Semm P. Geomagnetic field detection in rodents. Life Sciences 1988; 42: 605–613
  • Pazo J.H. Effects of melatonin on spontaneous and evoked neuronal activity in the mesencephalic reticular formation. Brain Research Bulletin 1979; 4: 725–730
  • Reuss S.T., Semm P., Vollrath L. Different types of magnetically sensitive cells in the rat pineal gland. Neuroscience Letters 1983; 40: 23–26
  • Roldan E., Anton-Tay F. EEG and convulsive threshold changes produced by pineal extract administration. Brain Research 1968; 11: 238–245
  • Rosen A.D., Lubowsky J. Magnetic field influence on central nervous system functlon. Experimental Neurology 1987; 95: 679–687
  • Sallanon M., Claustrat B., Touret M. Presence of melatonin in various cat brainstem nuclei determined by radioimmunoassay. Acta Endocrinologica 1982; 101: 161–165
  • Sandyk R. Pineal melatonin functions: possible relevance to Parkinson's disease. International Journal of Neuroscience 1990; 50: 37–53
  • Sandyk R. Weak magnetic fields in the treatment of Parkinson's disease with the “on-off” phenomenon. International Journal of Neuroscience 1992; 66: 97–106
  • Sandyk R. Weak magnetic fields as a novel therapeutic modality in Parkinson's disease. International Journal of Neuroscience 1992; 66: 1–15
  • Sandyk R. Magnetic fields in the therapy of Parkinsonism. International Journal of Neuroscience 1992; 66: 209–235
  • Sandyk R., Fisher H. Increased incidence neuroleptic-induced movement disorders in pinealectomized rats. International Journal of Neuroscience 1989; 48: 303–308
  • Sandyk R., Anninos P.A., Tsagas N., Derpapas K. Magnetic fields in the treatment of Parkinson's disease. International Journal of Neuroscience 1992; 63: 141–150
  • Semm P. Neurobiological investigations on the magnetic sensitivity of the pineal gland in rodents and pigeons. Comparative Biochemistry and Physiology 1983; 76A: 683–689
  • Semm P. Pineal function in mammals and birds is altered by earth-strength magnetic fields. Electromagnetic fields and circadian rhythmicity, M. C. Moore-Ede, S.S. Campbell, R.J. Reiter. Birkhauser, Boston 1992; 53–62
  • Semm P., Nohr D., Demaine C., Wiltschko W. Neural basis of the magnetic compass: interactions of visual, magnetic and vestibular inputs in the pigeon's brain. Journal of Comparative Physiology 1984; 155: 283–288
  • Stoupel E., Keret R., Assa S., Kaufman H., Shimshoni M., Laron Z. Secretion of growth hormone, prolactin and corticosteroids during different levels of geomagnetic activity. Neuroendocrine Letters 1983; 5: 365–368
  • Welker H.A., Semm P., Willig R.P., Commentz J.C., Wiltschko W., Vollrdth L. Effects of an artificial magnetic field on serotonin N-acetyltransferase activity and melatonin content of the rat pineal gland. Experimental Brain Research 1983; 50: 426–432
  • Wilson B.W., Anderson L.E., Hilton D.I., Phillips R.D. Chronic exposure to 60-Hz electric field: effects on pineal function in the rat. Bioelectromagnetics 1981; 2: 371–380
  • Zisapel N., Egozi Y., Laudon M. Inhibition of dopamine release by melatonin: regional distribution in the rat brain. Brain Research 1982; 246: 161–163

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.