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Reference cited by multiple papers
Grace AA (1991) Phasic versus tonic dopamine release and the modulation of dopamine system responsivity: a hypothesis for the etiology of schizophrenia.
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Gruber AJ, Dayan P, Gutkin BS, Solla SA (2006)
Dopamine modulation in the basal ganglia locks the gate to working memory.
J Comput Neurosci
Gruber AJ, Solla SA, Surmeier DJ, Houk JC (2003)
Modulation of striatal single units by expected reward: a spiny neuron model displaying dopamine-induced bistability.
Spiny neuron model with dopamine-induced bistability (Gruber et al 2003) [Model]
Kötter R, Wickens J (1998)
Striatal mechanisms in Parkinson's disease: new insights from computer modeling.
Artif Intell Med
Maex R, Grinevich VP, Grinevich V, Budygin E, Bencherif M, Gutkin B (2014)
Understanding the role a7 nicotinic receptors play in dopamine efflux in nucleus accumbens.
ACS Chem Neurosci
Nicotinic control of dopamine release in nucleus accumbens (Maex et al. 2014) [Model]
Prescott TJ, Montes González FM, Gurney K, Humphries MD, Redgrave P (2006)
A robot model of the basal ganglia: behavior and intrinsic processing.
A contracting model of the basal ganglia (Girard et al. 2008) [Model]
Reneaux M, Gupta R (2018)
Prefronto-cortical dopamine D1 receptor sensitivity can critically influence working memory maintenance during delayed response tasks
Effect of cortical D1 receptor sensitivity on working memory maintenance (Reneaux & Gupta 2018) [Model]
Smith AJ, Becker S, Kapur S (2005)
A computational model of the functional role of the ventral-striatal D2 receptor in the expression of previously acquired behaviors.