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Restorative Neurology and Neuroscience|May 10, 2011
Development of pyramidal cells in medial frontal cortex following neonatal lesions of anterior midline cortexJ M De Brabander, B KolbBehavioural Brain Research|May 13, 1998
Cerebral morphology and functional sparing after prenatal frontal cortex lesions in ratsB Kolb, J Cioe, D MuirheadNeuroscience Letters|June 12, 1985
Non-cholinergic globus pallidus cells that project to the cortex but not to the subthalamic nucleus in ratD Van der Kooy, B KolbBrain Research|May 30, 1994
Neonatal frontal cortex grafts fail to attenuate behavioural deficits or abnormal cortical morphogenesisB Kolb, D Muirhead, J CioePharmacology, Biochemistry, and Behavior|June 1, 1990
Effect of forebrain dopamine depletion on novelty-induced place preference behavior in ratsR C Pierce, C A Crawford, A J Nonneman, et al.Clinical Cardiology|November 20, 2001
Characteristics of patients with coronary artery disease and hypertension: a report from INVESTS Erdine, E M Handberg, B KolbJournal of Comparative and Physiological Psychology|February 1, 1981
An analysis of feeding and sensorimotor abilities of rats after decorticationI Q Whishaw, T Schallert, B KolbBehavioural Brain Research|October 1, 1980
Effects of kainic acid lesions in the lateral hypothalamus on behavior and hippocampal and neocortical electroencephalographic (EEG) activity in the ratL Leach, I Q Whishaw, B KolbBehavioural Brain Research|February 25, 1998
Recovery of function is associated with increased spine density in cortical pyramidal cells after frontal lesions and/or noradrenaline depletion in neonatal ratsB Kolb, J Stewart, R J SutherlandRestorative Neurology and Neuroscience|March 6, 2012
Is there an optimal age for recovery from motor cortex lesions? II. behavioural and anatomical consequences of unilateral motor cortex lesions in perinatal, infant, and adult ratsB Kolb, J Cioe, I Q WhishawPageof 17