Image Processing Reference
In-Depth Information
55.
Kruggel, F., Wiggins, C.J., Herrmann, C.S., and von Cramon, D.Y. (2000). Record-
ing of the event-related potentials during functional MRI at 3.0 Tesla field strength.
Magn. Reson. Med. 44(2): 277-282.
56.
Goldman, R.I., Stern, J.M., Engel, J., Jr., and Cohen, M.S. (2000). Acquiring
simultaneous EEG and functional MRI. Clin. Neurophysiol . 111(11): 1974-1980.
57.
Lemieux, L., Allen, P.J., Franconi, F., Symms, M.R., and Fish, D.R. (1997).
Recording of EEG during f MRI experiments: patient safety. Magn. Reson. Med .
38(6): 943-952.
58.
Angelone, L.M., Potthast, A., Segonne, F., Iwaki, S., Belliveau, J.W., and Bonmassar,
G. (2004). Metallic electrodes and leads in simultaneous EEG-MRI: specific absorp-
tion rate (SAR) simulation studies. Bioelectromagnetics . 25(4): 285-295.
59.
Lazeyras, F., Zimine, I., Blanke, O., Perrig, S.H., and Seeck, M. (2001). Functional
MRI with simultaneous EEG recording: feasibility and application to motor and
visual activation. J. Magn. Reson. Imaging . 13(6): 943-948.
60.
Krakow, K., Allen, P.J., Symms, M.R., Lemieux, L., Josephs, O., and Fish, D.R.
(2000). EEG recording during f MRI experiments: image quality. Hum. Brain
Mapp . 10(1): 10-15.
61.
Bonmassar, G., Schwartz, D.P., Liu, A.K., Kwong, K.K., Dale, A.M., and Belliveau,
J.W. (2001). Spatiotemporal brain imaging of visual-evoked activity using inter-
leaved EEG and f MRI recordings. NeuroImage 13(6.1): 1035-1043.
62.
Menon, V., Ford, J.M., Lim, K.O., Glover, G.H., and Pfefferbaum, A. (1997).
Combined event-related f MRI and EEG evidence for temporal-parietal cortex
activation during target detection. Neuroreport . 8(14): 3029-3037.
63.
Horovitz, S.G., Skudlarski, P., and Gore, J.C. (2002). Correlations and dissoci-
ations between BOLD signal and P300 amplitude in an auditory oddball task:
a parametric approach to combining f MRI and ERP. Magn. Reson. Imaging . 20(4):
319-325.
64.
Horovitz, S.G., Rossion, B., Skudlarski, P., and Gore J.C. (2004). Parametric
design and correlational analyses help integrating f MRI and electrophysiological
data during face processing. NeuroImage 22(4): 1587-1595.
65.
Schulz, M., Chau, W., Graham, S.J., McIntosh, A.R., Ross, B., Ishii, R., and
Pantev, C. (2004). An integrative MEG-f MRI study of the primary somatosensory
cortex using cross-modal correspondence analysis. NeuroImage 22(1):120-133.
66.
Warach, S., Ives, J.R., Schlaug, G., Patel, M.R., Darby, D.G., Thangaraj, V.,
Edelman, R.R., and Schomer, D.L. (1996). EEG-triggered echo-planar functional
MRI in epilepsy. Neurology 47(1): 89-93.
67.
Seeck, M., Lazeyras, F., Michel, C.M., Blanke, O., Gericke, C.A., Ives, J.,
Delavelle, J., Golay, X., Haenggeli, C.A., de Tribolet, N., and Landis, T. (1998).
Non-invasive epileptic focus localization using EEG-triggered functional MRI and
electromagnetic tomography. Electroencephalogr. Clin. Neurophysiol . 106(6):
508-512.
68.
Lazeyras, F., Blanke, O., Perrig, S., Zimine, I., Golay, X., Delavelle, J., Michel,
C.M., de Tribolet, N., Villemure, J.G., and Seeck, M. (2000). EEG-triggered
functional MRI in patients with pharmacoresistant epilepsy. J. Magn. Reson.
Imaging . 12(1):177-185.
69.
Krakow, K., Lemieux, L., Messina, D., Scott, C.A., Symms, M.R., Duncan,
J.S., and Fish, D.R. (2001). Spatiotemporal imaging of focal interictal epilep-
tiform activity using EEG-triggered functional MRI. Epileptic Disord . 3(2):
67-74.
Search WWH ::




Custom Search