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Original Article

Locating vep equivalent dipoles in magnetic resonance images

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Pages 105-116 | Published online: 07 Jul 2009

References

  • Ary J. P., Klein S. A., Fender D. H. Location of sources of evoked scalp potentials: corrections for skull and scalp thickness. IEEE Transactions on Biomedical Engineering 1981; 28: 447–452
  • Barrett G., Blumhardt L., Halliday A. M., Halliday E., Kriss A. A paradox in the lateralisation of the visual evoked response. Nature 1976; 261: 253–255
  • Belliveau J. W., Kennedy D. N., McKinstry R. C., Buchbinder B. R., Weisskoff R. M., Cohen M. S., Vevea J. M., Brady T. J., Rosen B. R. Functional mapping of the human visual cortex by magnetic resonance imaging. Science 1991; 254: 716–719
  • Berg P., Scherg M. Dipole models of eye movements and blinks. Electroencephalography and clinical Neurophysiology 1991; 79: 36–44
  • Blumhardt L. D., Barrett G., Halliday A. M. The asymmetrical visual evoked potential to pattern reversal in one half field and its significance for the analysis of visual field defects. British Journal of Ophthalmology 1977; 61: 454–461
  • Brigell M. G., Celesia G. G., Salvi F., Clark-Bash R. Topographic mapping of electrophysiologic measures in patients with homonymous hemianopia. Neurology 1990; 40: 1566–1570
  • Brigell M., Rubboli G., Celesia G. G. Identification of the hemisphere activated by hemifield visual stimulation using a single equivalent dipole model. Electroencephalography and clinical Neurophysiology 1993; 87: 291–299
  • Butler S. R., Georgiou G. A., Glass A., Hancox R. J., Hopper J. M., Smith K. R. H. Cortical generators of the CI component of the pattern-onset visual evoked potential. Electroencephalography and clinical Neurophysiology 1987; 68: 256–267
  • Cobb W. A., Morton H. B. Evoked potentials from the human scalp to visual half-field stimulation. Journal of Physiology (London) 1970; 208: 29–40P
  • Cuffin B. N. A comparison of moving dipole inverse solutions using EEG's and MEG's. IEEE Transactions on Biomedical Engineering 1985; 32: 905–910
  • Cuffin B. N. Effects of head shape on EEG's and MEG's. IEEE Transactions on Biomedical Engineering 1990; 37: 44–52
  • Dagnelie G., Spekreijse H., Van Dijk B. Topography and homogeneity of monkey VI studied through subdurally recorded pattern-evoked potentials. Visual Neuroscience 1989; 3: 509–525
  • Darcey T. M., Ary J. P., Fender D. H. Methods for the localization of electrical sources in the human brain. Progress in Brain Research 1980; 54: 128–134
  • Desmedt J. E., Chalklin V., Tomberg C. Emulation of somatosensory evoked potential (SEP) components with the 3-shell head model and the problem of ‘ghost potential fields’ when using an average reference in brain mapping. Electroencephalography and clinical Neurophysiology 1990; 77: 243–258
  • Ducati A., Fava E., Motti E. D. F. Neuronal generators of the visual evoked potentials: Intracerebral recording in awake humans. Electroencephalography and clinical Neurophysiology 1988; 71: 89–99
  • Eason R. G., White C. T., Bartlett N. Effects of checkerboard pattern stimulation on evoked cortical responses in relation to check size and visual field. Psychonomic Science 1970; 21: 113–115
  • Fender D. H. Models of the human brain and the surrounding media: Their influence on the reliability of source localization. Journal of Clinical Neurophysiology 1991; 8: 381–390
  • Fox P. T., Miezin F. M., Allman J. M., Van Essen D. C., Raichle M. E. Retinotopic organization of human visual cortex mapped with positron-emission tomography. Journal of Neuroscience 1987; 7: 913–922
  • Gevins A. S., Ules J. Neurocognitive networks of the human brain. Annals of the New York Academy of Sciences 1991; 620: 22–44
  • Halliday A. M., Michael W. F. Changes in pattern-evoked responses in man associated with die vertical and horizontal meridians of the visual field. Journal of Physiology (London) 1970; 208: 499–513
  • Harter M. R. Evoked cortical responses to checkerboard patterns: Effect of check-size as a function of retinal eccentricity. Vision Research 1970; 10: 1365–1376
  • He B., Musha T. Effects of cavities on EEG dipole localization and their relations with surface electrode positions. International Journal of Biomedical Computing 1989; 24: 269–282
  • He B., Musha T., Okamoto Y., Saburo H., Nakajima Y., Sato T. Electric dipole tracing in the brain by means of the boundary element method and its accuracy. IEEE Transactions in Biomedical Engineering 1987; 34: 406–414
  • Horton J. C., Hoyt W. F. The represtentation of the visual field in human striate cortex. Archives of Ophthalmology 1991; 109: 816–824
  • Jeffreys D. A., Axford J. G. Source locations of pattern-specific components of human visual evoked potentials: I. Component of visual striate cortical origin. Experimental Brain Research 1972; 16: 1–21
  • Kraut M. A., Arezzo J. C., Vaughan H. G., Jr. Intracortical generators of the flash VEP in monkeys. Electroencephalography and clinical Neurophysiology 1985; 62: 300–312
  • Kuroiwa Y., Celesia G. G. Visual evoked potentials with hemifield pattern stimulation: Their use in the diagnosis of retrochiasmatic lesions. Archives of Neurology 1981; 38: 86–90
  • Lehmann D., Darcey T. M., Skrs W. Intracerebral and scalp fields evoked byhemiretinal checkerboard reversal, and modeling ui their dipole generators. Clinical applications of evoked potentials in neurology, J. Courjon, F. Mauguiere, M. Revol. Raven, New York 1982; 41–48
  • Lesevre N., Joseph J. P. Modifications of the pattern-evoked potential (PEP) in relation to the stimulated part of the visual field (clues for the most probable origin of each component). Electroencephalography and clinical Neurophysiology 1979; 47: 183–203
  • Levin D. N., Hu X., Tan K. K., Galhotra S. Surface of the brain: Three-dimensional MR images created with volume-rendering. Radiology 1989; 171: 277–280
  • Levin D. N., Hu X., Tan K. K., Galhotra S., Pelizzari C. A., Chen G. T. Y., Beck R. N., Chen C. T., Cooper M. D., Mullan J. F., Hekmatpanah J., Spire J. P. The brain: integrated three-dimensional display of MR and PET images of the brain. Radiology 1989; 172: 783–789
  • Levin D. N., Pelizzari C. A., Chen G. T. Y., Chen C-T., Cooper M. D. Retrospective geometric correlation of MR, CT and PET images. Radiology 1988; 169: 817–823
  • Mehta A. D., Simpson G. V., Scherg M., Vaughan H. G., Jr., Weiss K. (1990) Spatiotemporal analysis of visual activity in primates. I. Retinotopic activation of human visual cortex. Paper presented at the 20th annual meeting of the Society for Neuroscience, St. Louis, 1990
  • Mitzdorf U. Current source-density method and application in cat cerebral cortex: Investigation of evoked potentials and EEG phenomena. Physiological Reviews 1985; 65: 37–90
  • Nakajima Y., Homma S., Musha T., Okamoto Y., Ackerman R. H., Correia J. A., Alpert N. M. Dipole-tracing of abnormal slow brain potentials after cerebral stroke. Neuroscience Letters 1990; 112: 59–64
  • Ossenblok P., Spekreijse H. The extrastriate generators of the EP to checkerboard onset. A source localization approach. Electroencephalography and clinical Neurophysiology 1991; 80: 181–193
  • Pelizzari C. A., Chen G. T. Y., Spelbring D. R., Weichselbaum R. R., Chen C-T. Accurate three-dimensional registration of CT, PET, and/or MR images of the brain. Journal of Computer Assisted Tomography 1989; 13: 20–26
  • Robinson D. L., Rugg M. D. Latencies of visually responsive neurons in various regions of the rhesus monkey brain and their relation to human visual responses. Biological Psychology 1988; 26: 111–116
  • Scherg M., Picton T. W. Separation and identification of event-related potential components by brain electric source analysis. Event-related brain research (EEG Suppl. 42), C. H. M. Brunia, G. Mulder, M. N. Verbaten. Elsevier. 1991; 24–37
  • Scherg M., Von Cramon D. Two bilateral sources of the late AEP as identified by a spatio-temporal dipole model. Electroencephalography and clinical Neurophysiology 1985; 62: 32–44
  • Schroeder C. E., Tenke C. E., Givre S. J. Subcortical contributions to the surface-recorded flash-VEP in the awake macaque. Electroencephalography and clinical Neurophysiology 1992; 84: 219–231
  • Sidman R. D., Majer D. J., Ford M. R., Ramsey G. G., Schlichting C. Age related features of the resting pattern-reversal visual evoked response using the dipole localization method and cortical imaging technique. Journal of Neuroscience Methods 1991; 37: 27–36
  • Skrandies W., Lehmann D. Spatial principal components of multichannel maps evoked by lateral visual half-field stimuli. Electroencephalography and clinical Neurophysiology 1982; 54: 662–667
  • Spitzer A. R., Cohen L. G., Fabrikant J., Hallett M. A method for determining optimal interelectrode spacing for cerebral topographic mapping. Electroencephalography and clinical Neurophysiology 1989; 72: 355–361
  • Towle V. L., Bolanos J., Suarez D., Tan K., Grzeszczuk R., Levin D. N., Cakmur R., Frank S., Spire J-P. The spatial location of EEG electrodes: locating the best-fitting sphere relative to cortical anatomy. Electroencephalography and clinical Neurophysiology 1993; 86: 1–6
  • Towle V. L., Cakmur R., Levin D. N., Pelizzari C., Brigell M., Celesia G., Steck J. A., Grzeszczuk R., Spire J-P. Locating evoked potential dipoles in magnetic resonance images. Functional neuroimaging: technical foundations, R. W. Thatcher, M. Hallett, E. R. John, M. Huerta. Academic Press. 1994; 243–250
  • Towle V. L., Witt J. C., Ohira T., Munson R., Nader S. H., Spire J-P. Three-dimensional human pattern visual evoked potentials. I. Normal subjects. Electroencephalography and Clinical Neurophysiology 1991; 80: 329–338
  • Van den Elsen P. A., Viergever M. A. Marker guided registration of electromagnetic dipole data with tomographic images. Information processing in medical imaging, A. C. F. Colchester, D. J. Hawkes. Springer-Verlag, Berlin 1991; 142–154
  • Van Essen D. C., Anderson C. H., Felleman D. J. Information processing in the primate visual system: An integrated systems perspective. Science 1992; 255: 419–423
  • Witt J. C., Towle V. L., Bolanos J., Spire J-P. Tetrahedral recording of 3-D BAEPs: Evidence for the centered dipole model. Electroencephalography and clinical Neurophysiology 1991; 80: 551–560

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