Biomedical Engineering Reference
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References
[1]
Crone, N. E., A. S. Sinai, and A. Korzeniewska, “High-Frequency Gamma Oscillations and
Human Brain Mapping with Electrocorticography,” Prog. Brain Res. , Vol. 159, 2006,
pp. 279-302.
[2]
Pfurtscheller, G., “Quantification of ERD and ERS in the Time Domain,” in Event-Related
Desynchronization , G. Pfurtscheller and F. H. Lopes da Silva, (eds.), Vol. 6, Amsterdam:
Elsevier, 1999, pp. 89-105.
[3]
Spencer, K. M., and J. Polich, “Poststimulus EEG Spectral Analysis and P300: Attention,
Task, and Probability,” Psychophysiology , Vol. 36, 1999, pp. 220-232.
[4]
Demiralp, T., et al., “Wavelet Analysis of P3a and P3b,” Brain Topogr. , Vol. 13, 2001,
pp. 251-267.
[5]
Yordanova, J., V. Kolev, and J. Polich, “P300 and Alpha Event-Related Desynchronization
(ERD),” Psychophysiology , Vol. 38, 2001, pp. 143-152.
[6]
Herrmann, C. S., and R. T. Knight, “Mechanisms of Human Attention: Event-Related
Potentials and Oscillations,” Neurosci. Biobehav. Rev. , Vol. 25, 2001, pp. 465-476.
[7]
Pantev, C., “Evoked and Induced Gamma-Band Activity of the Human Cortex,” Brain
Topogr. , Vol. 7, 1995, pp. 321-330.
[8]
Soltani, M., and R. T. Knight, “Neural Origins of the P300,” Crit. Rev. Neurobiol. , Vol. 14,
2000, pp. 199-224.
[9]
Knight, R., “Contribution of Human Hippocampal Region to Novelty Detection,” Nature ,
Vol. 383, 1996, pp. 256-259.
[10]
Knight, R. T., et al., “The Effects of Frontal Cortex Lesions on Event-Related Potentials
During Auditory Selective Attention,” Electroencephalogr. Clin. Neurophysiol. , Vol. 52,
1981, pp. 571-582.
[11]
Brazdil, M., et al., “Combined Event-Related fMRI and Intracerebral ERP Study of an
Auditory Oddball Task,” NeuroImage , Vol. 26, 2005, pp. 285-293.
[12]
Halgren, E., K. Marinkovic, and P. Chauvel, “Generators of the Late Cognitive Potentials in
Auditory and Visual Oddball Tasks,” Electroencephalogr. Clin. Neurophysiol. , Vol. 106,
1998, pp. 156-164.
[13]
Allison, T., et al., “Human Extrastriate Visual Cortex and the Perception of Faces, Words,
Numbers, and Colors,” Cereb. Cortex , Vol. 4, 1994, pp. 544-554.
[14]
Nobre, A. C., T. Allison, and G. McCarthy, “Word Recognition in the Human Inferior
Temporal Lobe,” Nature , Vol. 372, 1994, pp. 260-263.
[15]
Nobre, A. C., and G. McCarthy, “Language-Related Field Potentials in the Anterior-Medial
Temporal Lobe: II. Effects of Word Type and Semantic Priming,” J. Neurosci. , Vol. 15,
1995, pp. 1090-1098.
[16]
Nobre, A. C., T. Allison and G. McCarthy, “Modulation of Human Extrastriate Visual Pro-
cessing
by
Selective
Attention
to
Colours
and
Words,”
Brain ,
Vol.
121,
1998,
pp. 1357-1368.
[17]
Puce, A., T. Allison, and G. McCarthy, “Electrophysiological Studies of Human Face Per-
ception. III: Effects of Top-Down Processing on Face-Specific Potentials,” Cereb. Cortex ,
Vol. 9, 1999, pp. 445-458.
[18]
Allison, T., et al., “Potentials Evoked in Human and Monkey Cerebral Cortex by Stimula-
tion of the Median Nerve: A Review of Scalp and Intracranial Recordings,” Brain , Vol. 114,
Pt. 6, 1991, pp. 2465-2503.
[19]
McCarthy, G., T. Allison, and D. D. Spencer, “Localization of the Face Area of Human
Sensorimotor Cortex by Intracranial Recording of Somatosensory Evoked Potentials,” J.
Neurosurg. , Vol. 79, 1993, pp. 874-884.
[20]
Dinner, D. S., et al., “Cortical Generators of Somatosensory Evoked Potentials to Median
Nerve Stimulation,” Neurology , Vol. 37, 1987, pp. 1141-1145.
 
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