MesulamM-M. Large-scale neurocognitive networks and distributed processing for attention, language, and memory. Ann Neurol1990; 28: 597–613.
2.
PetscheH. EEG und Denken. Z EEG-EMG1990; 21: 207–218.
3.
KoedaTKnyazevaMNjiokiktjienCJonkmanEJDe SonnevolleLVildavskyV. The EEG in acallosal children. Coherence values in the resting state: Left hemisphere compensatory mechanism?Electroencephalogr Clin Neurophysiol1995; 95: 397–407.
4.
RodriguezEGeorgeNLachauxJPMartinerieJRenaultBVarelaFJ. Perception's shadow: Long-distance synchronization of human brain activity. Nature1999; 397: 430–433.
5.
YakovlevPILecoursAR. The myelogenetic cycles of regional maturation of the brain. In: MinkowskiA (ed). Regional Development of the Brain in Early Life. Oxford: Blackewell; 1967: 3–70.
6.
ConelJ. The postnatal development of the human cerebral cortex, vols 1–8. Cambridge, Mass: Harvard University Press; 1939–1967.
7.
GasserTJennen-SteinmetzCSrokaLVerlegerRMocksJ. Development of the EEG of school-age children and adolescents. II. Topography. Electroencephalogr Clin Neurophysiol1988; 69: 100–109.
8.
McAlasterR. Postnatal cerebral maturation in Down's syndrome children: A developmental EEG coherence study. Int J Neurosci1992; 65: 221–237.
9.
MarosiEHarmonyTSanchezL. Maturation of the coherence of EEG activity in normal and learning-disabled children. Electroencephalogr Clin Neurophysiol1992; 83: 350–357.
10.
MarosiEHarmonyTReyesA. A follow-up study of EEG coherences in children with different pedagogical evaluations. Int J Psychophysiology1997; 25: 227–235.
11.
MarosiEHarmonyTBeckerJ. Sex differences in EEG coherence in normal children. Int J Neurosci1993; 1151–1121.
12.
WackermannJ. Beyond mapping: Estimating the complexity of multichannel EEG recordings. Acta Neurobiol Experiment1996; 56: 197–208.
13.
KondakorIBrandeisDWackermannJ. Multichannel EEG fields during and without visual input: Frequency domain source locations and dimensional complexities. Neurosci Letters1997; 226: 49–52.
14.
SaitoNKuginukiTYagyuT. Global, regional, and local measures of complexity of multichannel electroencephalography in acute, first-break schizophrenics. Biol Psychiatry1998; 43: 794–802.
15.
ThatcherRWKrausePJHrybykM. Cortico-cortical associations and EEG coherence: A two-compartment model. Electroencephalogr Clin Neurophysiol1986; 64: 123–143.
16.
ThatcherRWWalkerRAGiudiceS. Human cerebral hemispheres develop at different rates and different ages. Science1987; 236: 1110–1113.
17.
ThatcherRW. Cyclic cortical reorganization during early childhood. Brain Cogn1992; 20: 24–50.
18.
Lopes da SilvaFHVosJEMooibroekJ, Rotterdam A van. Relative contributions of intracortical and thalamocortical processes in the generation of alpha rhythms, revealed by partial coherence analysis. Electroencephalogr Clin Neurophysiol1980; 50: 449–456. [422]
19.
WrightJJKyddRR. The electroencephalogram and cortical neural networks. Network1992; 3: 341–362.
20.
TononiGEdelmanGM. Consciousness and complexity. Science1998; 282: 1846–1851.