Ania Wisniecki, Ph.D.

Affiliations: 
Psychology University of Connecticut, Storrs, CT, United States 
Area:
Neuroscience
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"Ania Wisniecki"
Cross-listing: Neurotree

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Publications

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Hodge J, Bow JP, Plyler KS, et al. (2008) The cannabinoid CB1 receptor inverse agonist AM 251 and antagonist AM 4113 produce similar effects on the behavioral satiety sequence in rats. Behavioural Brain Research. 193: 298-305
McLaughlin PJ, Qian L, Wood JT, et al. (2006) Suppression of food intake and food-reinforced behavior produced by the novel CB1 receptor antagonist/inverse agonist AM 1387. Pharmacology, Biochemistry, and Behavior. 83: 396-402
Betz A, Ishiwari K, Wisniecki A, et al. (2005) Quetiapine (Seroquel) shows a pattern of behavioral effects similar to the atypical antipsychotics clozapine and olanzapine: studies with tremulous jaw movements in rats. Psychopharmacology. 179: 383-92
Salamone JD, Carlson BB, Rios C, et al. (2005) Dopamine agonists suppress cholinomimetic-induced tremulous jaw movements in an animal model of Parkinsonism: tremorolytic effects of pergolide, ropinirole and CY 208-243. Behavioural Brain Research. 156: 173-9
Correa M, Wisniecki A, Betz A, et al. (2004) The adenosine A2A antagonist KF17837 reverses the locomotor suppression and tremulous jaw movements induced by haloperidol in rats: possible relevance to parkinsonism. Behavioural Brain Research. 148: 47-54
McLaughlin PJ, Winston K, Swezey L, et al. (2003) The cannabinoid CB1 antagonists SR 141716A and AM 251 suppress food intake and food-reinforced behavior in a variety of tasks in rats. Behavioural Pharmacology. 14: 583-8
Wisniecki A, Correa M, Arizzi MN, et al. (2003) Motor effects of GABA(A) antagonism in globus pallidus: studies of locomotion and tremulous jaw movements in rats. Psychopharmacology. 170: 140-9
Carlson BB, Wisniecki A, Salamone JD. (2003) Local injections of the 5-hydroxytryptamine antagonist mianserin into substantia nigra pars reticulata block tremulous jaw movements in rats: studies with a putative model of Parkinsonian tremor. Psychopharmacology. 165: 229-37
Correa M, Carlson BB, Wisniecki A, et al. (2002) Nucleus accumbens dopamine and work requirements on interval schedules. Behavioural Brain Research. 137: 179-87
Salamone JD, Wisniecki A, Carlson BB, et al. (2001) Nucleus accumbens dopamine depletions make animals highly sensitive to high fixed ratio requirements but do not impair primary food reinforcement. Neuroscience. 105: 863-70
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