SannitaWGMaggiLRosadiniG. Effects of scopolamine (0.25–0.75mg i.m.) on the quantitative EEG and the neuropsychological status of healthy volunteers. Neuropsy-chobiology1987; 17: 199–205.
2.
SannitaWGBalestraVDiBonGMarottaVRosadiniG. Human flash-VEP and quantitative EEG are independently affected by acute scopolamine. Electroencephalogr Clin Neurophysiol1993; 86: 275–282.
3.
SloanEPFentonGWStandageKP. Anticholinergic drug effects on quantitative electroencephalogram, visual evoked potential and verbal memory. Biol Psychiatry1992; 31: 600–606.
4.
SoininenHRiekkinenPPartanenVJPaakkonenAHelkalaELLaulumaaV. EEG in the diagnosis of early Alzheimer disease. In: BeckerREGiacobiniE. (eds.) Alzheimer Disease. Current Research and Early Diagnosis. New York: Taylor and Fancis, 1990: 159–169.
5.
FrenchCCBeaumontJC. A critical review of EEG coherence studies of hemisphere function. Int J Psychophysiol1984; 1: 241–254.
6.
WadaYNanbuYKoshinoYYamaguchiNHashimotoT. Reduced interhemispheric EEG coherence in Alzheimer disease: Analysis during rest and photic stimulation. Alzheimer Dis Assoc Disord1998; 12: 175–181.
7.
CoyleJTPriceDLDeLongMR. Alzheimer's disease: A disorder of cortical cholinergic innervation. Science1983; 219: 1184–1190.
8.
McGeerPLMcGeerEGSuzukiJDolmanCENagaiT. Aging, Alzheimer's disease, and the cholinergic system of the basal forebrain. Neurology1984; 34: 741–745.
9.
SatoHHataJMasuiHTsumotoT. A functional role of cholinergic innervation to neurons in the cat visual cortex. J Neurophysiol1987; 58: 765–780.
10.
WrightCEDrasdoNHardingGFA. Pathology of the optic nerve and visual association areas. Information given by the flash and pattern visual evoked potential, and the temporal and spatial contrast sensitivity function. Brain1987; 110: 107–120.
11.
WechslerDStoneCP. Manual for the Wechsler Memory Scale. New York: The Psychological Corp; 1945.
12.
SaferDJAllenRP. The central effects of scopolamine in man. Biol Psychiatry1971; 3: 347–355.
KoedaTKnyazevaMNijiokiktjienCJonkmanEJDe SonnevilleLVildavskyV. The EEG in acallosal children. Coherence values in the resting state: Left hemisphere compensatory mechanism?Electroencephalogr Clin Neurophysiol1995; 95: 397–407.
15.
MontplaisirJNielsenTCoteJBoivinDRouleauILapierreG, Interhemispheric EEG coherence before and after partial callosotomy. Clin Electroencephalogr1990; 21: 42–47.
16.
NielsenTMontplaisirJLassondeM, Decreased interhemispheric EEG coherence during sleep in agenesis of the corpus callosum. Eur Neurol1993; 33: 173–176.
17.
KawaguchiTJijiwaHWatanabeS. The dynamics of phase relationships of alpha waves during photic stimulation. Electroencephalogr Clin Neurophysiol1993; 87: 88–96.
18.
KiyosawaMPappataSDuvergerD. Cortical hypometabolism and its recovery following nucleus basalis lesions in baboons: A PET study. J Cereb Blood Flow Metab1987; 7: 812–817.
19.
OrziFDianaGCasamentiFPalomboEFieschiC. Local cerebral glucose utilization following unilateral and bilateral lesions of the nucleus basalis magnocellularis in the rat. Brain Res1988; 462: 99–103.
20.
TanakaKGotohFIshikawaYGomiSTakashimaSMiharaB. Behavior and local cerebral glucose metabolism in rats with lesions of nucleus basalis magnocellularis. J Cereb Blood Flow Metab1987; 7 (suppl 1): S380.
FeinGRazJBrownFFMerrinEL. Common reference coherence data are confounded by power and phase effects. Electroencephalogr Clin Neurophysiol1988; 69: 581–584.
23.
MolchanSEMartinezRAHillJL. Increased cognitive sensitivity to scopolamine with age and a perspective on the scopolamine model. Brain Res Brain Res Rev1992; 17: 215–226.
24.
MeadorKJLoringDWDavisHCSethiKDPatelBRAdamsRJ. Cholinergic and serotonergic effects on the P3 potential and recent memory. J Clin Exp Neuropsychol1989; 11: 252–260.
25.
TariotPNPatelSVCoxCHendersonRE. Age-related decline in central cholinergic function demonstrated with scopolamine. Psychopharmacology1996; 125: 50–56.
26.
FlickerCFerrisSHSerbyM. Hypersensitivity to scopolamine in the elderly. Psychopharmacology1992; 107: 437–441.
27.
JelicVShigetaMJulinPAlmkvistOWinbladBWahlundLO. Quantitiative electroencephalography power and coherence in Alzheimer's disease and mild cognitive impairment. Dementia1996; 7: 314–323.
28.
FletcherDJRazJFeinG. Intra-hemispheric alpha coherence decreases with increasing cognitive impairment in HIV patients. Electroencephalogr Clin Neurophysiol1997; 1021286–294.