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Journal of Neuroscience Methods|January 14, 2000
Histochemical mapping of the substrate for brain-stimulation reward with glycogen phosphorylaseA T Konkle, P Wilson, C BielajewBehavioural Brain Research|January 11, 2000
The effects of cholecystokinin on stimulation-induced feeding and self-stimulationA T Konkle, S L Kubelka, C BielajewBehavioural Brain Research|April 1, 1987
Refractoriness of neurons mediating intracranial self-stimulation in the anterior basal forebrainG Fouriezos, S Walker, J Rick, et al.Physiology & Behavior|January 1, 1982
Absolute and relative refractory periods of the substrates for lateral hypothalamic and ventral midbrain self-stimulationC Bielajew, M Lapointe, I Kiss, et al.Behavioural Brain Research|November 14, 2002
The effects of chronic mild stress on male Sprague-Dawley and Long Evans rats: I. Biochemical and physiological analysesC Bielajew, A T M Konkle, Z MeraliPhysiology & Behavior|May 5, 2001
Factors that influence the persistence of stimulation-induced aversionM Diotte, C Bielajew, M Miguelez, et al.Behavioural Brain Research|November 18, 2000
Interactions between rewarding lateral hypothalamic and aversive nucleus reticularis gigantocellularis stimulationM Diotte, M Miguelez, E Miliaressis, et al.Acta Neurobiologiae Experimentalis|January 25, 2000
Influence of bombesin on threshold for feeding and reward in the ratT Bushnik, C Bielajew, A T Konkle, et al.Brain Research|October 19, 2000
The substrate for brain-stimulation reward in the lateral preoptic area. II. Connections to the ventral tegmental areaC Bielajew, T Bushnik, A T Konkle, et al.Canadian Journal of Physiology and Pharmacology|October 1, 1986
6-Hydroxydopamine treatment enhances excitation of cultured cerebellar neurons by glutamateC B Garber-Goldsman, K C Marshall, C BielajewPageof 192