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Behavioral Neuroscience|March 16, 2000
Amygdala lesions do not impair shock-probe avoidance retention performanceH Lehmann, D Treit, M B ParentBrain Research Bulletin|October 1, 1987
Ro 15-1788, CGS 8216, picrotoxin, and pentylenetetrazol: do they antagonize anxiolytic drug effects through an anxiogenic action?D TreitPharmacology, Biochemistry, and Behavior|May 1, 1990
A comparison of anxiolytic and nonanxiolytic agents in the shock-probe/burying test for anxiolyticsD TreitPharmacology, Biochemistry, and Behavior|March 1, 1985
Evidence that tolerance develops to the anxiolytic effect of diazepam in ratsD TreitNeuroscience and Biobehavioral Reviews|January 1, 1985
Animal models for the study of anti-anxiety agents: a reviewD TreitPharmacology, Biochemistry, and Behavior|January 1, 1985
The inhibitory effect of diazepam on defensive burying: anxiolytic vs. analgesic effectsD TreitPharmacology, Biochemistry, and Behavior|August 1, 1988
A comparison of buspirone and chlordiazepoxide in the shock-probe/burying test for anxiolyticsD Treit, M FundytusPhysiology & Behavior|February 1, 1990
Septal lesions inhibit fear reactions in two animal models of anxiolytic drug actionD Treit, C PesoldBehavioural Pharmacology|July 6, 2000
Intra-septal infusions of excitatory amino acid receptor antagonists have differential effects in two animal models of anxietyJ Menard, D TreitBehavioral Neuroscience|June 1, 1997
Dissociations among the anxiolytic effects of septal, hippocampal, and amygdaloid lesionsD Treit, J MenardPageof 52