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Behavioural Brain Research|January 1, 1990
Behavioural effects of neocortical and cingulate lesions in the Mongolian gerbilC G Ellard, D J Stewart, S Donaghy, et al.Brain Research|August 14, 1999
Behavioral effects of anti-muscarinic, anti-serotonergic, and anti-NMDA treatments: hippocampal and neocortical slow wave electrophysiology predict the effects on grooming in the ratB J Robertson, F Boon, D P Cain, et al.Brain Research|February 4, 1994
Histamine does not play an essential role in electrocortical activation during waking behaviorP Servos, K E Barke, L B Hough, et al.Brain Research Bulletin|January 1, 1993
Effects of some cholinergic agonists on neocortical slow wave activity in rats with basal forebrain lesionsC H Vanderwolf, A Raithby, M Snider, et al.Behavioural Brain Research|June 26, 2001
Spatial learning in the guinea pig: cued versus non-cued learning, sex differences, and comparison with ratsH C Dringenberg, D P Richardson, J F Brien, et al.Brain Research|December 18, 1989
The role of serotonin in the control of cerebral activity: studies with intracerebral 5,7-dihydroxytryptamineC H Vanderwolf, L W Leung, G B Baker, et al.Brain Research|June 7, 1988
Neocortical and hippocampal electrical activity following decapitation in the ratC H Vanderwolf, G Buzsaki, D P Cain, et al.Behavioural Brain Research|December 21, 2002
Role of the neocortex in the water maze task in the rat: a detailed behavioral and Golgi-Cox analysisTimothy E Hoh, Bryan Kolb, Ayelet Eppel, et al.Behavioral Neuroscience|February 1, 1996
Detailed behavioral analysis of water maze acquisition under systemic NMDA or muscarinic antagonism: nonspatial pretraining eliminates spatial learning deficitsD Saucier, E L Hargreaves, F Boon, et al.Neuroreport|December 16, 2000
A novel nitrate ester reverses the cognitive impairment caused by scopolamine in the Morris water mazeS Smith, H C Dringenberg, B M Bennett, et al.Pageof 11