UCD Geary Institute
Neuroeconomics   
Bibliography Neural Basis of Time Preferences
Neural Basis of Time Preferences

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CARDINAL, R.N. (2006). “Neural systems implicated in delayed and probabilistic reinforcement”. Neural Networks 19(8): 1277-1301 

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EVENDEN, J.L. (1998). “The pharmacology of impulsive behaviour in rats III: the effects of amphetamine, haloperidol, impramine, chlordiazepoxide and ethanol on a paced fixed consecutive number schedule”, Psychopharmacology, 138(3/4), 295-304  

EVENDEN, J.L. (1999). “Varieties of Impulsivity”, Psychopharmacology, 146: 348-361   EVENDEN, J.L. (1999). “Impulsivity: a discussion of clinical and experimental findings”, Journal of Psychopharmacology, 13(2): 180-192    

EVENDEN, J.L. (1999). “The pharmacology of impulsive behaviour in rats VII: the effects of serotonergic agonists and antagonists on responding under a discrimination task using unreliable visual stimuli”, Psychopharmacology, 146(4), 422-431  

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FELLOWS, L.K., & FARAH, M.J. (2005). “Dissociable elements of human foresight: a role for the ventromedial frontal lobes in framing the future, but not in discounting future rewards”, Neuropsychologia, 43(8), 1214-1221

FINN, P.R., MAZAS, C.A., JUSTUS, A.N., STEINMETZ, J. (2002). “Early onset alcoholism with conduct disorder: Go/no-go learning deficits, working memory capacity and personality”, Alcoholism: Clinical and Experimental Research, 26(2), 187-206

GLIMCHER, P.W., KABLE, J., LOUIE, K.  (2007).  "Neuroeconomic studies of impulsivity: now or just as soon as possible?".  American Economic Review 97(2): 142-147

HARIRI, A.H., BROWN, S.M., WILLIAMSON, D.E., FLORY, J.D., DE WIT, H., MANUCK, S.B.  (2006).  "Preferences for immediate over delayed rewards is associated with magnitude of ventral striatal activity".  The Journal of Neuroscience 26(51), 13213-13217 

HARRINGTON, D.L., LEE, R.R., BOYD, L.A., RAPCSAK, S.Z., KNIGHT, R.T. (2004). “Does the representation of time depend on the cerebellum? Effect of cerebellar stroke”, Brain, 127(3): 561-574

HARRINGTON, D.L., LEE, R.R., BOYD, L.A., RAPCSAK, S.Z., KNIGHT, R.T. (2004). “Reply to: Evaluating the role of the cerebellum in temporal processing: Beware of the null hypothesis”, Brain, 127(8): e14  

HO, M.Y., MOBINI, S., CHIANG, T.J., BRADSHAW, C.M. & SZABADI, E. (1999). “Theory and method in the quantitative analysis of “impulsive choice” behaviour: implications for psychopharmacology”, Psychopharmacology, 146(4): 362-372  

IVRY, R..B., & SPENCER, M.C. (2004). “Evaluating the role of the cerebellum in temporal processing: Beware of the null hypothesis”, Brain, 127(8): e13    

IVRY, R.B., SPENCER, R.M.C.  (2004).  "The neural representation of time".  Current Opinion in Neurobiology 14(2): 225-232  

IZAWA, E-I., ZACHAR, G., YANAGIHARA, S. & MATSUSHIMA, T. (2003). “Localized lesion of caudal part of lobus parolfactorius caused impulsive choice in the domestic chick: Evolutionary conserved function of ventral striatum”, The Journal of Neuroscience, 23(5), 1894-1902  

KHERAMIN, S., BODY, S., MOBINI, S., ET AL. (2002). “Effects of quinolinic acid-induced lesions of the orbital prefrontal cortex on inter-temporal choice: a quantitative analysis”, Psychopharmacology, 165, 9-17  

KHERAMIN, S., BODY, S., HO, M.Y., ET AL. (2004). “Effects of orbital prefrontal cortex dopamine depletion on inter-temporal choice: a quantitative analysis”, Psychopharmacology, 175, 206-214  

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KREEK, J.J., NIELSEN, D.A., BUTELMAN, E.R. & LAFORGE, S.K. (2005). “Genetic influences on impulsivity, risk taking, stress responsivity and vulnerability to drug abuse and addiction”, Nature Neuroscience, 8(11):1450-1457    

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MCCLURE, S., LAIBSON, D., LOEWENSTEIN, G., COHEN, J.  (2004).  "Seperate neural systems value immediate over delayed rewards".  Science 306(5695): 503-507

MCCLURE, S.M., ERICSON, K.M., LAIBSON, D.I., LOEWENSTEIN, G. & COHEN, J.D.  (2007).  "Time Discounting for Primary Rewards".  The Journal of Neuroscience 27(21): 5796-5804  

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MCDONALD, J., SCHLEIFER, L., RICHARDS, J.B. & DE WIT, H. (2003). “Effects of THC on behavioural measures of impulsivity in humans, Neuropsychopharmacology”, 28(7): 1356-1365  

MOBINI, S., CHIANG, T.J., AL-RUWAITEA, A.S.A., HO, M..Y., BRADSHAW, C.M. & SZABADI, E. (2000). “Effect of central 5-hydroxytryptamine depletion on inter-temporal choice: a quantitative analysis”, Psychopharmacology, 149(3): 313-318

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MONTAGUE, P., KING-CASAS, B. & COHEN, J. (2006), “Imaging Valuation Models in Human Choice”, Annual Review of Neuroscience, 29: 417-448

MONTEROSSO, J.R., AINSLIE, G., XU, J., CORDOVA, X., DOMIER, C.P., LONDON, E.D.  (2007).  "Frontoparietal cortical activity of methamphetamine-dependent and comparison subjects performing a delay discounting task".  Human Brain Mapping 28(5): 383-393  

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WINSTANLEY, C.A., DALLEY, J.W., THEOBALD, D.E.H. & ROBBINS, T.W. (2004). “Fractionating impulsivity: contrasting effects of central 5-HT depletion on different measures of impulsive behaviour”, Neuropsychopharmacology, 29(7): 1331-1343  

WINSTANLEY, C.A., THEOBALD, D.E.H., CARDINAL, R.N. & ROBBINS, T.W. (2004). “Contrasting roles of basolateral amygdala and orbitofrontal cortex in impulsive choice”, The Journal of Neuroscience, 24(20): 4718-4722 

WINSTANLEY, C.A., EAGLE, D.M., & ROBBINS, T.W. (2006). “Behavioural models of impulsivity in relation to ADHD: Translation between clinical and preclinical studies”, Clinical Psychology Review, 26(4): 379-395      

WINSTANLEY, C.A., THEOBALD, D.E.H., DALLEY, J.W., CARDINAL, R.N. & ROBBINS, T.W. (2006). “Double dissociation between serotonergic and dopaminergic modulation of medial prefrontal and orbitofrontal cortex during a test of impulsive choice”, Cerebral Cortex, 16(1): 106-114

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