LesserRPLuedersHKlemGDinnerDSMorrisHHHahnJF. Wyllie extraoperative cortical functional localization in patients with epilepsy. J Clin Neurophysiol1979; 4: 27–53.
2.
WinklerPAVollmarCKrishnanKGPflugerTBruckmannHNoachtarS. Usefulness of 3-D reconstructed images of the human cerebral cortex for localization of subdural electrodes in epilepsy surgery. Epilepsy Res2000; 41: 169–178.
3.
Schulze-BonhageAHHuppertzHJComeauRMHoneggerJBSpreerJMZentnerJK. Visualization of subdural strip and grid electrodes using curvilinear reformatting of 3D MR imaging data sets. AJNR Am J Neuroradiol2002; 23(3): 400–403.
4.
MorrisKO'BrienTJCookMJMurphyMBowdenSC. A computer-generated stereotactic “Virtual Subdural Grid” to guide resective epilepsy surgery. AJNR Am J Neuroradiol2004; 25: 77–83.
5.
KovalevDSpreerJHoneggerJZentnerJSchulze-BonhageAHuppertzHJ. Rapid and fully automated visualization of subdural electrodes in the presurgical evaluation of epilepsy patients. AJNR Am J Neuroradiol2005; 26: 1078–1083.
6.
VollmarCWinklerPANoachtarS. Visualization of subdural electrodes. AJNR Am J Neuroradiol2003; 24(8): 1727–1728.
7.
ChauWMcIntoshAR. The Talairach coordinate of a point in the MNI space: how to interpret it. Neuroimage2005; 25: 408–416.
8.
TalairachJTournouxP. Co-planar stereotaxic atlas of the human brain: 3-dimensional proportional system: an approach to cerebral imaging. Stuttgart: Thieme; 1988.
9.
CrivelloFSchormannTTzourio-MazoyerNRolandPEZillesKMazoyerBM. Comparison of spatial normalization procedures and their impact on functional maps. Hum Brain Mapp2002; 16(4): 228–250.
10.
LachauxJPHoffmannDMinottiLBerthozAKahaneP. Intracerebral dynamics of saccade generation in the human frontal eye field and supplementary eye field. Neuroimage2006; 30(4): 1302–1312.
FitzGeraldDBCosgroveGRRonnerSJiangHBuchbinderBRBellivieauJW. Location of language in the cortex: a comparison between functional MR imaging and electrocortical stimulation. AJNR Am J Neuroradiol1997; 18: 1529–1539.
13.
LucasTHMcKhannGMOjemannGA: Functional separation of languages in the bilingual brain: a comparison of electrical stimulation language mapping in 25 bilingual patients and 117 monolingual control patients. J Neurosurg2004; 101: 449–457.
14.
SinaiABowersCWCrainiceanuCMBoatmanDGordonBLesserRP. Electrocorticographic high gamma activity versus electrical cortical stimulation mapping of naming. Brain2005; 128: 1556–1570.
15.
BrovelliALachauxJPKahanePBoussaoudD. High gamma frequency oscillatory activity dissociates attention from intention in the human premotor cortex. Neuroimage2005; 28(1): 154–164.
16.
EdwardsESoltaniMDeouellLYBergerMSKnightRT. High gamma activity in response to deviant auditory stimuli recorded directly from human cortex. J Neurophysiol2005; 94(6): 4269–4280.
17.
SebastianoFDi GennaroGEspositoVPicardiAMoraceRSparanoA. A rapid and reliable procedure to localize subdural electrodes in presurgical evaluation of patients with drug-resistant focal epilepsy. Clin Neurophysiol2006; 117(2): 341–347.