Nucleus accumbens and impulsivity
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[1] R. Lubow,et al. Latent inhibition: the effect of nonreinforced pre-exposure to the conditional stimulus. , 1959, Journal of comparative and physiological psychology.
[2] Brains of Rats and Men , 1965 .
[3] J. Kagan. Reflection--impulsivity: the generality and dynamics of conceptual tempo. , 1966, Journal of abnormal psychology.
[4] J. Stevens. An anatomy of schizophrenia? , 1973, Archives of general psychiatry.
[5] S. Messer,et al. Reflection-impulsivity: A review. , 1976 .
[6] H. Eysenck,et al. The place of impulsiveness in a dimensional system of personality description. , 1977, The British journal of social and clinical psychology.
[7] G. P. Smith,et al. Efferent connections and nigral afferents of the nucleus accumbens septi in the rat , 1978, Neuroscience.
[8] Douglas L. Jones,et al. From motivation to action: Functional interface between the limbic system and the motor system , 1980, Progress in Neurobiology.
[9] J. Gray,et al. A Critique of Eysenck’s Theory of Personality , 1981 .
[10] G. Logan,et al. On the ability to inhibit simple and choice reaction time responses: a model and a method. , 1984, Journal of experimental psychology. Human perception and performance.
[11] H. Groenewegen,et al. Organization of the efferent projections of the nucleus accumbens to pallidal, hypothalamic, and mesencephalic structures: A tracing and immunohistochemical study in the cat , 1984, The Journal of comparative neurology.
[12] R. Post,et al. The neurobiology of some dimensions of personality. , 1984, International review of neurobiology.
[13] M. Herkenham,et al. Cell clusters in the nucleus accumbens of the rat, and the mosaic relationship of opiate receptors, acetylcholinesterase and subcortical afferent terminations , 1984, Neuroscience.
[14] L. Heimer,et al. Cholecystokinin innervation of the ventral striatum: A morphological and radioimmunological study , 1985, Neuroscience.
[15] G. Paxinos. The Rat nervous system , 1985 .
[16] H. Eysenck. Behaviourism and Clinical Psychiatry , 1985, The International journal of social psychiatry.
[17] G. E. Alexander,et al. Parallel organization of functionally segregated circuits linking basal ganglia and cortex. , 1986, Annual review of neuroscience.
[18] P. Soubrié. Reconciling the role of central serotonin neurons in human and animal behavior , 1986, Behavioral and Brain Sciences.
[19] M. Witter,et al. Organization of the projections from the subiculum to the ventral striatum in the rat. A study using anterograde transport of Phaseolus vulgaris leucoagglutinin , 1987, Neuroscience.
[20] J. Gray,et al. Perspectives on Anxiety and Impulsivity: A Commentary , 1987 .
[21] L. Heimer,et al. New perspectives in basal forebrain organization of special relevance for neuropsychiatric disorders: The striatopallidal, amygdaloid, and corticopetal components of substantia innominata , 1988, Neuroscience.
[22] A. Logue. Research on self-control: An integrating framework , 1988, Behavioral and Brain Sciences.
[23] Trevor W. Robbins,et al. Effects of 6-hydroxydopamine lesions of the nucleus accumbens septi on performance of a 5-choice serial reaction time task in rats: Implications for theories of selective attention and arousal , 1989, Behavioural Brain Research.
[24] C. Gerfen,et al. Compartmental organization of the ventral striatum of the rat: Immunohistochemical distribution of enkephalin, substance P, dopamine, and calcium‐binding protein , 1989, The Journal of comparative neurology.
[25] H. Groenewegen,et al. Organization of the thalamostriatal projections in the rat, with special emphasis on the ventral striatum , 1990, The Journal of comparative neurology.
[26] S B Dunnett,et al. Role of prefrontal cortex and striatal output systems in short-term memory deficits associated with ageing, basal forebrain lesions, and cholinergic-rich grafts. , 1990, Canadian journal of psychology.
[27] S. Haber,et al. The relationship between ventral striatal efferent fibers and the distribution of peptide-positive woolly fibers in the forebrain of the rhesus monkey , 1990, Neuroscience.
[28] H. Groenewegen,et al. Connections of the subthalamic nucleus with ventral striatopallidal parts of the basal ganglia in the rat , 1990, The Journal of comparative neurology.
[29] I. Weiner. Neural substrates of latent inhibition: the switching model. , 1990, Psychological bulletin.
[30] A. Graybiel. Neurotransmitters and neuromodulators in the basal ganglia , 1990, Trends in Neurosciences.
[31] S. Dickman,et al. PERSONALITY PROCESSES AND INDIVIDUAL DIFFERENCES Functional and Dysfunctional Impulsivity: Personality and Cognitive Correlates , 1990 .
[32] G. E. Alexander,et al. Basal ganglia-thalamocortical circuits: parallel substrates for motor, oculomotor, "prefrontal" and "limbic" functions. , 1990, Progress in brain research.
[33] P. Costa,et al. Personality in adulthood , 1990 .
[34] Stephen B. Dunnett,et al. The effects of excitotoxic lesions of the nucleus accumbens on a matching to position task , 1991, Behavioural Brain Research.
[35] D. S. Zahm,et al. Specificity in the projection patterns of accumbal core and shell in the rat , 1991, Neuroscience.
[36] H. Groenewegen,et al. Topographical organization and relationship with ventral striatal compartments of prefrontal corticostriatal projections in the rat , 1992, The Journal of comparative neurology.
[37] A. Deutch,et al. Pharmacological characterization of dopamine systems in the nucleus accumbens core and shell , 1992, Neuroscience.
[38] D. S. Zahm,et al. On the significance of subterritories in the “accumbens” part of the rat ventral striatum , 1992, Neuroscience.
[39] S. Haber,et al. Organization of the output of the ventral striatopallidal system in the rat: Ventral pallidal efferents , 1993, Neuroscience.
[40] D. S. Zahm,et al. The patterns of afferent innervation of the core and shell in the “Accumbens” part of the rat ventral striatum: Immunohistochemical detection of retrogradely transported fluoro‐gold , 1993, The Journal of comparative neurology.
[41] E. Barratt. Impulsivity: Integrating cognitive, behavioral, biological, and environmental data. , 1993 .
[42] C. R. Cloninger,et al. A psychobiological model of temperament and character. , 1993, Archives of general psychiatry.
[43] Myrna B. Shure,et al. The Impulsive client : theory, research, and treatment , 1993 .
[44] H. Berendse,et al. Heterogeneous distribution of dopamine D1 and D2 receptors in the human ventral striatum , 1993, Neuroscience Letters.
[45] J. Salamone. The involvement of nucleus accumbens dopamine in appetitive and aversive motivation , 1994, Behavioural Brain Research.
[46] S. Haber,et al. Primate cingulostriatal projection: Limbic striatal versus sensorimotor striatal input , 1994, The Journal of comparative neurology.
[47] A. Caspi,et al. Measuring impulsivity and examining its relationship to delinquency. , 1994, Journal of abnormal psychology.
[48] J. Deniau,et al. Indirect nucleus accumbens input to the prefrontal cortex via the substantia nigra pars reticulata: A combined anatomical and electrophysiological study in the rat , 1994, Neuroscience.
[49] A. Damasio,et al. Insensitivity to future consequences following damage to human prefrontal cortex , 1994, Cognition.
[50] H. Groenewegen,et al. Immunohistochemical Characterization of the Shell and Core Territories of the Nucleus Accumbens in the Rat , 1994, The European journal of neuroscience.
[51] A. Nieoullon,et al. In a rat model of parkinsonism, lesions of the subthalamic nucleus reverse increases of reaction time but induce a dramatic premature responding deficit , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[52] A. Grace,et al. Synaptic interactions among excitatory afferents to nucleus accumbens neurons: hippocampal gating of prefrontal cortical input , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[53] J. Patton,et al. Factor structure of the Barratt impulsiveness scale. , 1995, Journal of clinical psychology.
[54] J. Rawlins,et al. Both Electrolytic and Excitotoxic Lesions of Nucleus Accumbens Disrupt Latent Inhibition of Learning in Rats , 1995, Neurobiology of Learning and Memory.
[55] F. Earls,et al. Psychometric properties of impulsivity measures: temporal stability, validity and factor structure. , 1995, Journal of child psychology and psychiatry, and allied disciplines.
[56] V J Brown,et al. Discriminative Cues Indicating Reward Magnitude Continue to Determine Reaction Time of Rats Following Lesions of the Nucleus Accumbens , 1995, The European journal of neuroscience.
[57] T. Bussey,et al. Dissociable effects of AMPA-induced lesions of the vertical limb diagonal band of Broca on performance of the 5-choice serial reaction time task and on acquisition of a conditional visual discrimination , 1996, Behavioural Brain Research.
[58] H. Berendse,et al. Densitometrical analysis of opioid receptor ligand binding in the human striatum—I. Distribution of μ opioid receptor defines shell and core of the ventral striatum , 1996, Neuroscience.
[59] M. Fabre-Thorpe,et al. Effect of lesioning the nucleus accumbens on attentive preparation and performance of a reaching movement in the cat , 1996, Behavioural Brain Research.
[60] J. Rawlins,et al. Differential involvement of the shell and core subterritories of the nucleus accumbens in latent inhibition and amphetamine-induced activity , 1996, Behavioural Brain Research.
[61] S. Haber,et al. Shell and core in monkey and human nucleus accumbens identified with antibodies to calbindin‐D28k , 1996, The Journal of comparative neurology.
[62] H. Groenewegen,et al. Basal amygdaloid complex afferents to the rat nucleus accumbens are compartmentally organized , 1996, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[63] J. Mink. THE BASAL GANGLIA: FOCUSED SELECTION AND INHIBITION OF COMPETING MOTOR PROGRAMS , 1996, Progress in Neurobiology.
[64] T. Robbins,et al. Neurobehavioural mechanisms of reward and motivation , 1996, Current Opinion in Neurobiology.
[65] H. Groenewegen,et al. The nucleus accumbens: gateway for limbic structures to reach the motor system? , 1996, Progress in brain research.
[66] R. Barkley. Behavioral inhibition, sustained attention, and executive functions: constructing a unifying theory of ADHD. , 1997, Psychological bulletin.
[67] J. Cummings,et al. Frontal-subcortical circuits: the anatomic basis of executive, social and motivated behaviors , 1997, Journal of psychopharmacology.
[68] I. Weiner,et al. The switching model of latent inhibition: an update of neural substrates , 1997, Behavioural Brain Research.
[69] B. J. Casey,et al. Implication of right frontostriatal circuitry in response inhibition and attention-deficit/hyperactivity disorder. , 1997, Journal of the American Academy of Child and Adolescent Psychiatry.
[70] Barry J. Everitt,et al. Central 5-HT depletion enhances impulsive responding without affecting the accuracy of attentional performance: interactions with dopaminergic mechanisms , 1997, Psychopharmacology.
[71] S. Foote,et al. Distribution of dopamine β‐hydroxylase‐like immunoreactive fibers within the shell subregion of the nucleus accumbens , 1997, Synapse.
[72] J. Salamone,et al. The Role of Accumbens Dopamine in Lever Pressing and Response Allocation: Effects of 6-OHDA Injected into Core and Dorsomedial Shell , 1998, Pharmacology Biochemistry and Behavior.
[73] Arjan Blokland,et al. Reaction Time Responding in Rats , 1998, Neuroscience & Biobehavioral Reviews.
[74] V. Brown,et al. Effects of excitotoxic lesions of the rat ventral striatum on the perception of reward cost , 1998, Experimental Brain Research.
[75] Garrett E. Alexander. Basal ganglia , 1998 .
[76] K. Berridge,et al. What is the role of dopamine in reward: hedonic impact, reward learning, or incentive salience? , 1998, Brain Research Reviews.
[77] J. Evenden. Impulsivity: a discussion of clinical and experimental findings , 1999, Journal of psychopharmacology.
[78] J. Evenden. Varieties of impulsivity , 1999, Psychopharmacology.
[79] I. Weiner,et al. Disrupted and Undisruptable Latent Inhibition following Shell and Core Lesions , 1999, Annals of the New York Academy of Sciences.
[80] G E Meredith,et al. The Synaptic Framework for Chemical Signaling in Nucleus Accumbens , 1999, Annals of the New York Academy of Sciences.
[81] A. Grace,et al. Modulation of Cell Firing in the Nucleus Accumbens , 1999, Annals of the New York Academy of Sciences.
[82] J. Joyce,et al. D3 Receptors and the Actions of Neuroleptics in the Ventral Striatopallidal System of Schizophrenics , 1999, Annals of the New York Academy of Sciences.
[83] S. Mobini,et al. Theory and method in the quantitative analysis of ”impulsive choice” behaviour: implications for psychopharmacology , 1999, Psychopharmacology.
[84] T. Robbins,et al. Dissociation in Effects of Lesions of the Nucleus Accumbens Core and Shell on Appetitive Pavlovian Approach Behavior and the Potentiation of Conditioned Reinforcement and Locomotor Activity byd-Amphetamine , 1999, The Journal of Neuroscience.
[85] P. Redgrave,et al. The basal ganglia: a vertebrate solution to the selection problem? , 1999, Neuroscience.
[86] J. Monterosso,et al. Beyond discounting: possible experimental models of impulse control , 1999, Psychopharmacology.
[87] J. Evenden. 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 , 1999, Psychopharmacology.
[88] H. Groenewegen,et al. Convergence and Segregation of Ventral Striatal Inputs and Outputs , 1999, Annals of the New York Academy of Sciences.
[89] L. Heimer,et al. Chapter II – The human basal forebrain. Part II , 1999 .
[90] H. Groenewegen,et al. Integration and segregation of limbic cortico-striatal loops at the thalamic level: an experimental tracing study in rats , 1999, Journal of Chemical Neuroanatomy.
[91] J. Evenden. The pharmacology of impulsive behaviour in rats V: the effects of drugs on responding under a discrimination task using unreliable visual stimuli , 1999, Psychopharmacology.
[92] L. Restivo,et al. Contextual‐dependent effects of nucleus accumbens lesions on spatial learning in mice , 2000, Neuroreport.
[93] J. Nigg. On inhibition/disinhibition in developmental psychopathology: views from cognitive and personality psychology and a working inhibition taxonomy. , 2000, Psychological bulletin.
[94] P. Sokoloff,et al. Possible implications of the dopamine D3 receptor in schizophrenia and in antipsychotic drug actions , 2000, Brain Research Reviews.
[95] Brian Knutson,et al. FMRI Visualization of Brain Activity during a Monetary Incentive Delay Task , 2000, NeuroImage.
[96] D. Lester,et al. Dimensions of Impulsiveness , 2000, Psychological reports.
[97] J. Price,et al. Prefrontal cortical projections to the striatum in macaque monkeys: Evidence for an organization related to prefrontal networks , 2000, The Journal of comparative neurology.
[98] D. S. Zahm,et al. An integrative neuroanatomical perspective on some subcortical substrates of adaptive responding with emphasis on the nucleus accumbens , 2000, Neuroscience & Biobehavioral Reviews.
[99] Nikolaus R. McFarland,et al. Striatonigrostriatal Pathways in Primates Form an Ascending Spiral from the Shell to the Dorsolateral Striatum , 2000, The Journal of Neuroscience.
[100] K. Berridge,et al. The psychology and neurobiology of addiction: an incentive-sensitization view. , 2000, Addiction.
[101] T. Robbins,et al. Disconnection of the anterior cingulate cortex and nucleus accumbens core impairs Pavlovian approach behavior: further evidence for limbic cortical-ventral striatopallidal systems. , 2000, Behavioral neuroscience.
[102] J. Bolam,et al. Synaptic organisation of the basal ganglia , 2000, Journal of anatomy.
[103] S. Whiteside,et al. The Five Factor Model and impulsivity: using a structural model of personality to understand impulsivity , 2001 .
[104] D. Dougherty,et al. Measurement of inter-episode impulsivity in bipolar disorder , 2001, Psychiatry Research.
[105] D. Kahneman,et al. Functional Imaging of Neural Responses to Expectancy and Experience of Monetary Gains and Losses tasks with monetary payoffs , 2001 .
[106] M. Petrides,et al. Wisconsin Card Sorting Revisited: Distinct Neural Circuits Participating in Different Stages of the Task Identified by Event-Related Functional Magnetic Resonance Imaging , 2001, The Journal of Neuroscience.
[107] U. Kamil,et al. Functional imaging , 2001, 2001 Conference Proceedings of the 23rd Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[108] B. Balleine,et al. The Role of the Nucleus Accumbens in Instrumental Conditioning: Evidence of a Functional Dissociation between Accumbens Core and Shell , 2001, The Journal of Neuroscience.
[109] T S Critchfield,et al. Temporal discounting: basic research and the analysis of socially important behavior. , 2001, Journal of applied behavior analysis.
[110] J. Sirviö,et al. Studies on the involvement of the dopaminergic system in the 5-HT2 agonist (DOI)-induced premature responding in a five-choice serial reaction time task , 2001, Brain Research Bulletin.
[111] Brian Knutson,et al. Dissociation of reward anticipation and outcome with event-related fMRI , 2001, Neuroreport.
[112] G. Di Chiara,et al. A Role for Dopamine D1 Receptors of the Nucleus Accumbens Shell in Conditioned Taste Aversion Learning , 2001, The Journal of Neuroscience.
[113] J. Salamone,et al. D1 or D2 antagonism in nucleus accumbens core or dorsomedial shell suppresses lever pressing for food but leads to compensatory increases in chow consumption , 2001, Pharmacology Biochemistry and Behavior.
[114] T. Robbins,et al. Impulsive Choice Induced in Rats by Lesions of the Nucleus Accumbens Core , 2001, Science.
[115] S. Floresco,et al. Modulation of Hippocampal and Amygdalar-Evoked Activity of Nucleus Accumbens Neurons by Dopamine: Cellular Mechanisms of Input Selection , 2001, The Journal of Neuroscience.
[116] T. Robbins,et al. Effects of STN lesions on simple vs choice reaction time tasks in the rat: preserved motor readiness, but impaired response selection , 2001, The European journal of neuroscience.
[117] Brian Knutson,et al. Anticipation of Increasing Monetary Reward Selectively Recruits Nucleus Accumbens , 2001, The Journal of Neuroscience.
[118] K. Berridge,et al. The Neuroscience of Natural Rewards: Relevance to Addictive Drugs , 2002, The Journal of Neuroscience.
[119] S. Haber,et al. Defining the Caudal Ventral Striatum in Primates: Cellular and Histochemical Features , 2002, The Journal of Neuroscience.
[120] G. Di Chiara. Nucleus accumbens shell and core dopamine: differential role in behavior and addiction. , 2002, Behavioural brain research.
[121] J. Deakin,et al. Effects of quinolinic acid-induced lesions of the orbital prefrontal cortex on inter-temporal choice: a quantitative analysis , 2002, Psychopharmacology.
[122] B. Everitt,et al. Emotion and motivation: the role of the amygdala, ventral striatum, and prefrontal cortex , 2002, Neuroscience & Biobehavioral Reviews.
[123] J. Deakin,et al. Effects of lesions of the orbitofrontal cortex on sensitivity to delayed and probabilistic reinforcement , 2002, Psychopharmacology.
[124] J. Feldon,et al. A differential involvement of the shell and core subterritories of the nucleus accumbens of rats in attentional processes , 2002, Neuroscience.
[125] J. Salamone,et al. Motivational views of reinforcement: implications for understanding the behavioral functions of nucleus accumbens dopamine , 2002, Behavioural Brain Research.
[126] T. Robbins,et al. The 5-choice serial reaction time task: behavioural pharmacology and functional neurochemistry , 2002, Psychopharmacology.
[127] T. Robbins,et al. Effects of selective excitotoxic lesions of the nucleus accumbens core, anterior cingulate cortex, and central nucleus of the amygdala on autoshaping performance in rats. , 2002, Behavioral neuroscience.
[128] K. Berridge,et al. Positive and Negative Motivation in Nucleus Accumbens Shell: Bivalent Rostrocaudal Gradients for GABA-Elicited Eating, Taste “Liking”/“Disliking” Reactions, Place Preference/Avoidance, and Fear , 2002, The Journal of Neuroscience.
[129] A differential involvement of the shell and core subterritories of the nucleus accumbens of rats in memory processes. , 2003, Behavioral neuroscience.
[130] R. Elliott,et al. Response inhibition and impulsivity: an fMRI study , 2003, Neuropsychologia.
[131] S. Hinshaw. Impulsivity, Emotion Regulation, and Developmental Psychopathology: Specificity Versus Generality of Linkages , 2003, Annals of the New York Academy of Sciences.
[132] J. Salamone,et al. Nucleus Accumbens Dopamine and the Regulation of Effort in Food-Seeking Behavior: Implications for Studies of Natural Motivation, Psychiatry, and Drug Abuse , 2003, Journal of Pharmacology and Experimental Therapeutics.
[133] D. V. von Cramon,et al. Error Monitoring Using External Feedback: Specific Roles of the Habenular Complex, the Reward System, and the Cingulate Motor Area Revealed by Functional Magnetic Resonance Imaging , 2003, The Journal of Neuroscience.
[134] K. Berridge,et al. Erratum to: “Parsing reward” [Trends Neurosci. 26 (2003) 507–513] , 2003, Trends in Neurosciences.
[135] K. Berridge,et al. Glutamate motivational ensembles in nucleus accumbens: rostrocaudal shell gradients of fear and feeding , 2003, The European journal of neuroscience.
[136] H. Groenewegen,et al. The medial prefrontal cortex in the rat: evidence for a dorso-ventral distinction based upon functional and anatomical characteristics , 2003, Neuroscience & Biobehavioral Reviews.
[137] Karl J. Friston,et al. Temporal Difference Models and Reward-Related Learning in the Human Brain , 2003, Neuron.
[138] N. Logothetis. The Underpinnings of the BOLD Functional Magnetic Resonance Imaging Signal , 2003, The Journal of Neuroscience.
[139] M. Herrmann,et al. Reduced response-inhibition in obsessive–compulsive disorder measured with topographic evoked potential mapping , 2003, Psychiatry Research.
[140] T. Robbins,et al. Dissociable aspects of performance on the 5-choice serial reaction time task following lesions of the dorsal anterior cingulate, infralimbic and orbitofrontal cortex in the rat: differential effects on selectivity, impulsivity and compulsivity , 2003, Behavioural Brain Research.
[141] G. Schoenbaum,et al. Lesions of Nucleus Accumbens Disrupt Learning about Aversive Outcomes , 2003, The Journal of Neuroscience.
[142] L. Heimer. A new anatomical framework for neuropsychiatric disorders and drug abuse. , 2003, The American journal of psychiatry.
[143] T. Robbins,et al. Global 5-HT depletion attenuates the ability of amphetamine to decrease impulsive choice on a delay-discounting task in rats , 2003, Psychopharmacology.
[144] M. Rieger,et al. Inhibition of ongoing responses following frontal, nonfrontal, and basal ganglia lesions. , 2003, Neuropsychology.
[145] G. Schoenbaum,et al. Neural Encoding in Ventral Striatum during Olfactory Discrimination Learning , 2003, Neuron.
[146] H. Groenewegen,et al. Does an imbalance between the dorsal and ventral striatopallidal systems play a role in Tourette's syndrome? A neuronal circuit approach , 2003, Brain and Development.
[147] T. Robbins,et al. Inhibition of subliminally primed responses is mediated by the caudate and thalamus: evidence from functional MRI and Huntington's disease. , 2003, Brain : a journal of neurology.
[148] K. Berridge,et al. Parsing reward , 2003, Trends in Neurosciences.
[149] Tatsuo K Sato,et al. Correlated Coding of Motivation and Outcome of Decision by Dopamine Neurons , 2003, The Journal of Neuroscience.
[150] D. Yves von Cramon,et al. Predicting events of varying probability: uncertainty investigated by fMRI , 2003, NeuroImage.
[151] T. Robbins,et al. Lesions of the medial prefrontal cortex or nucleus accumbens core do not impair inhibitory control in rats performing a stop-signal reaction time task , 2003, Behavioural Brain Research.
[152] Daniel D. Holt,et al. Is discounting impulsive? Evidence from temporal and probability discounting in gambling and non-gambling college students , 2003, Behavioural Processes.
[153] T. Robbins,et al. Inhibitory control in rats performing a stop-signal reaction-time task: effects of lesions of the medial striatum and d-amphetamine. , 2003, Behavioral neuroscience.
[154] J. Richards,et al. Delay discounting and probability discounting as related to cigarette smoking status in adults , 2004, Behavioural Processes.
[155] Marc N. Potenza,et al. Neurodevelopment, Impulsivity, and Adolescent Gambling , 2004, Journal of Gambling Studies.
[156] M. Brammer,et al. Neural correlates of switching set as measured in fast, event‐related functional magnetic resonance imaging , 2004, Human brain mapping.
[157] S. Mitchell. Measuring impulsivity and modeling its association with cigarette smoking. , 2004, Behavioral and cognitive neuroscience reviews.
[158] H. Steinbusch,et al. Monopolar versus bipolar high frequency stimulation in the rat subthalamic nucleus: differences in histological damage , 2004, Neuroscience Letters.
[159] Antoine Bechara,et al. Disturbances of emotion regulation after focal brain lesions. , 2004, International review of neurobiology.
[160] T. Robbins,et al. Prefrontal executive and cognitive functions in rodents: neural and neurochemical substrates , 2004, Neuroscience & Biobehavioral Reviews.
[161] Samuel M. McClure,et al. Separate Neural Systems Value Immediate and Delayed Monetary Rewards , 2004, Science.
[162] John J. Foxe,et al. Prefrontal‐subcortical dissociations underlying inhibitory control revealed by event‐related fMRI , 2004, The European journal of neuroscience.
[163] G. Pagnoni,et al. Human Striatal Responses to Monetary Reward Depend On Saliency , 2004, Neuron.
[164] Anastasia Christakou,et al. Prefrontal Cortical–Ventral Striatal Interactions Involved in Affective Modulation of Attentional Performance: Implications for Corticostriatal Circuit Function , 2004, The Journal of Neuroscience.
[165] Jane E. Johnson,et al. Distinct activities of Msx1 and Msx3 in dorsal neural tube development , 2004, Development.
[166] K I Bolla,et al. Cerebral Cortex Advance Access published May 13, 2004 Sex-related Differences in a Gambling Task and Its Neurological Correlates , 2022 .
[167] T. Robbins,et al. Amphetamine impairs the discriminative performance of rats with dorsal noradrenergic bundle lesions on a 5-choice serial reaction time task: New evidence for central dopaminergic-noradrenergic interactions , 2004, Psychopharmacology.
[168] R. Cardinal,et al. Nucleus accumbens core lesions retard instrumental learning and performance with delayed reinforcement in the rat , 2005, BMC Neuroscience.
[169] Christopher S. Monk,et al. Choice selection and reward anticipation: an fMRI study , 2004, Neuropsychologia.
[170] A. Miyake,et al. The relations among inhibition and interference control functions: a latent-variable analysis. , 2004, Journal of experimental psychology. General.
[171] Stephen B. Dunnett,et al. Embryonic striatal grafts reverse the disinhibitory effects of ibotenic acid lesions of the ventral striatum , 2004, Experimental Brain Research.
[172] T. Robbins,et al. Putting a spin on the dorsal–ventral divide of the striatum , 2004, Trends in Neurosciences.
[173] C. Ávila,et al. Measuring Impulsivity in School-Aged Boys and Examining Its Relationship with ADHD and ODD Ratings , 2004, Journal of abnormal child psychology.
[174] S. Nicola,et al. Contrast enhancement: a physiological effect of striatal dopamine? , 2004, Cell and Tissue Research.
[175] A. Simmons,et al. Selective activation of the nucleus accumbens during risk-taking decision making , 2004, Neuroreport.
[176] T. Robbins,et al. Contrasting Roles of Basolateral Amygdala and Orbitofrontal Cortex in Impulsive Choice , 2004, The Journal of Neuroscience.
[177] T. Robbins,et al. Risk taking during decision-making in normal volunteers changes with age , 2004, Journal of the International Neuropsychological Society.
[178] T. Robbins,et al. Lesions to the subthalamic nucleus decrease impulsive choice but impair autoshaping in rats: the importance of the basal ganglia in Pavlovian conditioning and impulse control , 2005, The European journal of neuroscience.
[179] Tobias Egner,et al. The neural correlates and functional integration of cognitive control in a Stroop task , 2005, NeuroImage.
[180] A. Grace,et al. Dopaminergic modulation of limbic and cortical drive of nucleus accumbens in goal-directed behavior , 2005, Nature Neuroscience.
[181] A. Blokland,et al. Evaluation of DOI, 8-OH-DPAT, eticlopride and amphetamine on impulsive responding in a reaction time task in rats , 2005, Behavioural pharmacology.
[182] F. Dellu-Hagedorn. Behavioral and Brain Functions , 2006 .
[183] D. Yves von Cramon,et al. Frontomedian activation depends on both feedback validity and valence: fMRI evidence for contextual feedback evaluation , 2005, NeuroImage.
[184] Matthew T. Kaufman,et al. Distributed Neural Representation of Expected Value , 2005, The Journal of Neuroscience.
[185] T. Robbins,et al. Stop signal response inhibition is not modulated by tryptophan depletion or the serotonin transporter polymorphism in healthy volunteers: implications for the 5-HT theory of impulsivity , 2005, Psychopharmacology.
[186] K. Berridge,et al. Hedonic Hot Spot in Nucleus Accumbens Shell: Where Do μ-Opioids Cause Increased Hedonic Impact of Sweetness? , 2005, The Journal of Neuroscience.
[187] Camelia M. Kuhnen,et al. The Neural Basis of Financial Risk Taking , 2005, Neuron.
[188] K. Doya,et al. Representation of Action-Specific Reward Values in the Striatum , 2005, Science.
[189] Gin S Malhi,et al. An emotional Stroop functional MRI study of euthymic bipolar disorder. , 2005, Bipolar disorders.
[190] Takashi Hanakawa,et al. Functional activity related to risk anticipation during performance of the Iowa gambling task , 2005, NeuroImage.
[191] W. Schultz,et al. Adaptive Coding of Reward Value by Dopamine Neurons , 2005, Science.
[192] Henk J Groenewegen,et al. Disorder-specific neuroanatomical correlates of attentional bias in obsessive-compulsive disorder, panic disorder, and hypochondriasis. , 2005, Archives of general psychiatry.
[193] H. Steinbusch,et al. The functional role of the subthalamic nucleus in cognitive and limbic circuits , 2005, Progress in Neurobiology.
[194] P. Dayan,et al. Uncertainty-based competition between prefrontal and dorsolateral striatal systems for behavioral control , 2005, Nature Neuroscience.
[195] I. Weiner,et al. Latent inhibition is disrupted by nucleus accumbens shell lesion but is abnormally persistent following entire nucleus accumbens lesion: The neural site controlling the expression and disruption of the stimulus preexposure effect , 2005, Behavioural Brain Research.
[196] N. Volkow,et al. The neural basis of addiction: a pathology of motivation and choice. , 2005, The American journal of psychiatry.
[197] Richard S. Sutton,et al. Learning to predict by the methods of temporal differences , 1988, Machine Learning.
[198] J. Feldon,et al. Double dissociation of the effects of selective nucleus accumbens core and shell lesions on impulsive‐choice behaviour and salience learning in rats , 2005, The European journal of neuroscience.
[199] Jeffrey C. Cooper,et al. Functional magnetic resonance imaging of reward prediction , 2005, Current opinion in neurology.
[200] Antoine Bechara,et al. Decision-making and impulse control after frontal lobe injuries , 2005, Current opinion in neurology.
[201] S. Inati,et al. An fMRI study of reward-related probability learning , 2005, NeuroImage.
[202] M. Paulus,et al. Neurobiology of Decision Making: A Selective Review from a Neurocognitive and Clinical Perspective , 2005, Biological Psychiatry.
[203] Erol Göka,et al. [Impulsivity and mental disorders]. , 2005, Turk psikiyatri dergisi = Turkish journal of psychiatry.
[204] Trevor W Robbins,et al. Interactions between Serotonin and Dopamine in the Control of Impulsive Choice in Rats: Therapeutic Implications for Impulse Control Disorders , 2005, Neuropsychopharmacology.
[205] Rudolf N Cardinal,et al. Effects of lesions of the nucleus accumbens core on choice between small certain rewards and large uncertain rewards in rats , 2005, BMC Neuroscience.
[206] P. Vuilleumier,et al. How brains beware: neural mechanisms of emotional attention , 2005, Trends in Cognitive Sciences.
[207] Aysenil Belger,et al. Dissociation of neural systems mediating shifts in behavioral response and cognitive set , 2005, NeuroImage.
[208] H. Cassaday,et al. Electrolytic lesions to nucleus accumbens core and shell have dissociable effects on conditioning to discrete and contextual cues in aversive and appetitive procedures respectively , 2005, Behavioural Brain Research.
[209] Eliza Congdon,et al. The endophenotype of impulsivity: reaching consilience through behavioral, genetic, and neuroimaging approaches. , 2005, Behavioral and cognitive neuroscience reviews.
[210] T. Robbins,et al. Behavioral models of impulsivity in relation to ADHD: Translation between clinical and preclinical studies , 2006, Clinical psychology review.
[211] M. Kawato,et al. Different neural correlates of reward expectation and reward expectation error in the putamen and caudate nucleus during stimulus-action-reward association learning. , 2006, Journal of neurophysiology.
[212] A. Hariri,et al. Preference for Immediate over Delayed Rewards Is Associated with Magnitude of Ventral Striatal Activity , 2006, The Journal of Neuroscience.
[213] S. Nicola. The nucleus accumbens as part of a basal ganglia action selection circuit , 2007, Psychopharmacology.
[214] Rudolf N. Cardinal,et al. Neural systems implicated in delayed and probabilistic reinforcement , 2006, Neural Networks.
[215] K. Berridge. The debate over dopamine’s role in reward: the case for incentive salience , 2007, Psychopharmacology.
[216] Brian Knutson,et al. Linking nucleus accumbens dopamine and blood oxygenation , 2007, Psychopharmacology.
[217] S. Floresco,et al. Dissociable Roles for the Nucleus Accumbens Core and Shell in Regulating Set Shifting , 2006, The Journal of Neuroscience.
[218] B. Balleine,et al. Parallel incentive processing: an integrated view of amygdala function , 2006, Trends in Neurosciences.
[219] Kevin Murphy,et al. Individual differences in the functional neuroanatomy of inhibitory control , 2006, Brain Research.
[220] Caroline F. Zink,et al. Human striatal activation reflects degree of stimulus saliency , 2006, NeuroImage.
[221] L. Vanderschuren,et al. Behavioral disinhibition requires dopamine receptor activation , 2006, Psychopharmacology.
[222] J. Jonides,et al. Brain mechanisms of proactive interference in working memory , 2006, Neuroscience.
[223] V. Visser-Vandewalle,et al. Targets for deep brain stimulation in Parkinson’s disease , 2006, Expert opinion on therapeutic targets.
[224] J. Salamone,et al. Effort-related functions of nucleus accumbens dopamine and associated forebrain circuits , 2007, Psychopharmacology.
[225] M. Delong,et al. Deep Brain Stimulation for Neurologic and Neuropsychiatric Disorders , 2006, Neuron.
[226] M. Kawato,et al. Association Learning Caudate Nucleus During Stimulus-Action-Reward and Reward Expectation Error in the Putamen and Different Neural Correlates of Reward Expectation , 2006 .
[227] R. Poldrack,et al. Ventral–striatal/nucleus–accumbens sensitivity to prediction errors during classification learning , 2006, Human brain mapping.
[228] R. Bos,et al. Toward a rodent model of the Iowa gambling task , 2006, Behavior research methods.
[229] M. Walton,et al. Separate neural pathways process different decision costs , 2006, Nature Neuroscience.
[230] S. Quartz,et al. Neural Differentiation of Expected Reward and Risk in Human Subcortical Structures , 2006, Neuron.
[231] L. Heimer,et al. The limbic lobe and its output channels: Implications for emotional functions and adaptive behavior , 2006, Neuroscience & Biobehavioral Reviews.
[232] Mitsuo Kawato,et al. Heterarchical reinforcement-learning model for integration of multiple cortico-striatal loops: fMRI examination in stimulus-action-reward association learning , 2006, Neural Networks.
[233] A. Lawrence,et al. The somatic marker hypothesis: A critical evaluation , 2006, Neuroscience & Biobehavioral Reviews.
[234] Terry E Robinson,et al. Subthalamic nucleus lesions increase impulsive action and decrease impulsive choice − mediation by enhanced incentive motivation? , 2006, The European journal of neuroscience.
[235] E. Nestler,et al. The Mesolimbic Dopamine Reward Circuit in Depression , 2006, Biological Psychiatry.
[236] Carla H. Lagorio,et al. Toward an Animal Model of Gambling: Delay Discounting and the Allure of Unpredictable Outcomes , 2007, Journal of Gambling Studies.
[237] A. Farrar,et al. Nucleus accumbens lesions decrease sensitivity to rapid changes in the delay to reinforcement , 2006, Behavioural Brain Research.
[238] Matthias Brand,et al. Neuropsychological correlates of decision-making in ambiguous and risky situations , 2006, Neural Networks.
[239] J. Gläscher,et al. Dissociable Systems for Gain- and Loss-Related Value Predictions and Errors of Prediction in the Human Brain , 2006, The Journal of Neuroscience.
[240] Henrik Walter,et al. Prediction error as a linear function of reward probability is coded in human nucleus accumbens , 2006, NeuroImage.
[241] J. Richards,et al. Dimensions of impulsive behavior: Personality and behavioral measures , 2006 .
[242] S. Floresco,et al. Dopaminergic regulation of limbic-striatal interplay. , 2007, Journal of psychiatry & neuroscience : JPN.
[243] J. O'Doherty,et al. Reward Value Coding Distinct From Risk Attitude-Related Uncertainty Coding in Human Reward Systems , 2006, Journal of neurophysiology.
[244] Samuel M. McClure,et al. Time Discounting for Primary Rewards , 2007, The Journal of Neuroscience.
[245] L. Lenchik. Functional imaging , 2007, Annals of Biomedical Engineering.
[246] R. Schachar,et al. Dissociation of response inhibition and performance monitoring in the stop signal task using event‐related fMRI , 2007, Human brain mapping.
[247] Brains of Rats and Men , 2007 .
[248] Brian Knutson,et al. Neural Antecedents of Financial Decisions , 2007, The Journal of Neuroscience.
[249] V. Harpin,et al. A multi-centre, randomised, open-label study of atomoxetine compared with standard current therapy in UK children and adolescents with attention-deficit/hyperactivity disorder (ADHD)* , 2007, Current medical research and opinion.
[250] K. Doya,et al. Multiple Representations of Belief States and Action Values in Corticobasal Ganglia Loops , 2007, Annals of the New York Academy of Sciences.
[251] C. M. Bradshaw,et al. Effects of quinolinic acid-induced lesions of the nucleus accumbens core on inter-temporal choice: a quantitative analysis , 2007, Psychopharmacology.
[252] R. Ebstein,et al. Relationship between dopamine system genes and extraversion and novelty seeking , 2007, Neuroscience and Behavioral Physiology.
[253] A. Bechara,et al. Decisions under ambiguity and decisions under risk: Correlations with executive functions and comparisons of two different gambling tasks with implicit and explicit rules , 2007, Journal of clinical and experimental neuropsychology.
[254] J. O'Doherty,et al. Neural coding of reward-prediction error signals during classical conditioning with attractive faces. , 2007, Journal of neurophysiology.
[255] S. Ikemoto. Dopamine reward circuitry: Two projection systems from the ventral midbrain to the nucleus accumbens–olfactory tubercle complex , 2007, Brain Research Reviews.
[256] G. Logan,et al. Restraint and Cancellation: Multiple Inhibition Deficits in Attention Deficit Hyperactivity Disorder , 2007, Journal of abnormal child psychology.
[257] B. Gold,et al. Functional Dissociation in Frontal and Striatal Areas for Processing of Positive and Negative Reward Information , 2007, The Journal of Neuroscience.
[258] Koji Jimura,et al. Activation of Right Inferior Frontal Gyrus during Response Inhibition across Response Modalities , 2007, Journal of Cognitive Neuroscience.
[259] W. Bickel,et al. Behavioral and neuroeconomics of drug addiction: competing neural systems and temporal discounting processes. , 2007, Drug and alcohol dependence.
[260] Jennifer M. Mitchell,et al. Immediate Reward Bias in Humans: Fronto-Parietal Networks and a Role for the Catechol-O-Methyltransferase 158Val/Val Genotype , 2007, The Journal of Neuroscience.
[261] Nicholas D. Walsh,et al. Neural basis of the emotional Stroop interference effect in major depression , 2007, Psychological Medicine.
[262] T. Robbins,et al. Differential Roles of Dopamine D1 and D2 Receptors in the Nucleus Accumbens in Attentional Performance on the Five-Choice Serial Reaction Time Task , 2007, Neuropsychopharmacology.
[263] V. Calhoun,et al. Functional neural circuits for mental timekeeping , 2007, Human brain mapping.
[264] S. Kapur,et al. Separate brain regions code for salience vs. valence during reward prediction in humans , 2007, Human brain mapping.
[265] W. Bickel,et al. Probability discounting among cigarette smokers and nonsmokers: molecular analysis discerns group differences , 2007, Behavioural pharmacology.
[266] Marc G. Berman,et al. Neural mechanisms of proactive interference-resolution , 2007, NeuroImage.
[267] A. Villringer,et al. Role of ventral striatum in reward-based decision making , 2007, Neuroreport.
[268] P. Glimcher,et al. The neural correlates of subjective value during intertemporal choice , 2007, Nature Neuroscience.
[269] Young T. Hong,et al. Nucleus Accumbens D2/3 Receptors Predict Trait Impulsivity and Cocaine Reinforcement , 2007, Science.
[270] Ying Liu,et al. High frequency deep brain stimulation: What are the therapeutic mechanisms? , 2008, Neuroscience & Biobehavioral Reviews.
[271] S. Huettel,et al. The neural substrates of probabilistic and intertemporal decision making , 2008, Brain Research.
[272] T. Robbins,et al. Neurobehavioral mechanisms of impulsivity: Fronto-striatal systems and functional neurochemistry , 2008, Pharmacology Biochemistry and Behavior.
[273] J. Deakin,et al. Effect of disconnecting the orbital prefrontal cortex from the nucleus accumbens core on inter-temporal choice behaviour: A quantitative analysis , 2008, Behavioural Brain Research.
[274] B. Everitt,et al. Cocaine Seeking Habits Depend upon Dopamine-Dependent Serial Connectivity Linking the Ventral with the Dorsal Striatum , 2008, Neuron.
[275] Daeyeol Lee,et al. Neural Dissociation of Delay and Uncertainty in Intertemporal Choice , 2008, The Journal of Neuroscience.
[276] P. Muris,et al. Impulsivity is associated with behavioral decision-making deficits , 2008, Psychiatry Research.
[277] T. Robbins,et al. Contrasting effects of selective lesions of nucleus accumbens core or shell on inhibitory control and amphetamine-induced impulsive behaviour , 2008, The European journal of neuroscience.
[278] S. Peciña,et al. Opioid reward ‘liking’ and ‘wanting’ in the nucleus accumbens , 2008, Physiology & Behavior.
[279] J. Pekar,et al. Meta-analysis of Go/No-go tasks demonstrating that fMRI activation associated with response inhibition is task-dependent , 2008, Neuropsychologia.
[280] Timothy E. J. Behrens,et al. Choice, uncertainty and value in prefrontal and cingulate cortex , 2008, Nature Neuroscience.
[281] Brian Knutson,et al. Valence and salience contribute to nucleus accumbens activation , 2008, NeuroImage.
[282] E. Rolls,et al. Cerebral Cortex Advance Access published June 22, 2007 Expected Value, Reward Outcome, and Temporal Difference Error Representations in a Probabilistic Decision Task , 2022 .
[283] K. Berridge,et al. Mesolimbic Dopamine in Desire and Dread: Enabling Motivation to Be Generated by Localized Glutamate Disruptions in Nucleus Accumbens , 2008, The Journal of Neuroscience.
[284] A. Grace,et al. Limbic and cortical information processing in the nucleus accumbens , 2008, Trends in Neurosciences.
[285] Rodney J. Moore,et al. Long-Term, Open-Label Safety and Efficacy of Atomoxetine in Adults With ADHD , 2008, Journal of attention disorders.
[286] Marc N. Potenza,et al. Pretreatment Brain Activation During Stroop Task Is Associated with Outcomes in Cocaine-Dependent Patients , 2008, Biological Psychiatry.
[287] S. Nicola,et al. Basolateral Amygdala Neurons Facilitate Reward-Seeking Behavior by Exciting Nucleus Accumbens Neurons , 2008, Neuron.
[288] T. Sesia,et al. Deep brain stimulation of the nucleus accumbens core and shell: Opposite effects on impulsive action , 2008, Experimental Neurology.
[289] T. Robbins,et al. Similar Effects of the Selective Noradrenaline Reuptake Inhibitor Atomoxetine on Three Distinct Forms of Impulsivity in the Rat , 2008, Neuropsychopharmacology.
[290] P. Clarke,et al. Rewarding and aversive effects of nicotine are segregated within the nucleus accumbens , 2008, The European journal of neuroscience.
[291] T. Robbins,et al. The neuropsychopharmacology of action inhibition: cross-species translation of the stop-signal and go/no-go tasks , 2008, Psychopharmacology.
[292] Chou-Ming Cheng,et al. Brain maps of Iowa gambling task , 2008, BMC Neuroscience.
[293] Gian Luca Romani,et al. Somato-motor inhibitory processing in humans: An event-related functional MRI study , 2008, NeuroImage.
[294] B. Balleine,et al. Reward‐guided learning beyond dopamine in the nucleus accumbens: the integrative functions of cortico‐basal ganglia networks , 2008, The European journal of neuroscience.
[295] Eliza Congdon,et al. Analysis of DRD4 and DAT polymorphisms and behavioral inhibition in healthy adults: Implications for impulsivity , 2008, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[296] T. Robbins,et al. Behavioural characterisation of high impulsivity on the 5-choice serial reaction time task: Specific deficits in ‘waiting’ versus ‘stopping’ , 2009, Behavioural Brain Research.
[297] Shu Li,et al. Neural mechanism of intertemporal choice: From discounting future gains to future losses , 2009, Brain Research.
[298] P. Fletcher,et al. Effects of 5-HT depletion in the frontal cortex or nucleus accumbens on response inhibition measured in the 5-choice serial reaction time test and on a DRL schedule , 2009, Behavioural Brain Research.
[299] Gary H. Glover,et al. The bivalent side of the nucleus accumbens , 2009, NeuroImage.
[300] Brian Knutson,et al. Dissociable neural representations of future reward magnitude and delay during temporal discounting , 2009, NeuroImage.
[301] F. Woermann,et al. Neural correlates of the individual emotional Stroop in borderline personality disorder , 2009, Psychoneuroendocrinology.
[302] Bruce W. Smith,et al. Neural Substrates of Reward Magnitude, Probability, and Risk during a Wheel of Fortune Decision-making Task Nih Public Access Cingulate Cortex in Decision-making , 2022 .
[303] O. Gruber,et al. Decomposing interference during Stroop performance into different conflict factors: An event-related fMRI study , 2009, Cortex.
[304] J. Fudge,et al. A developmental neurobiological model of motivated behavior: Anatomy, connectivity and ontogeny of the triadic nodes , 2009, Neuroscience & Biobehavioral Reviews.
[305] A. Hariri,et al. Genetic variation in components of dopamine neurotransmission impacts ventral striatal reactivity associated with impulsivity , 2009, Molecular Psychiatry.
[306] Wolfgang Hauber,et al. Prefrontostriatal circuitry regulates effort-related decision making. , 2009, Cerebral cortex.
[307] J. Deakin,et al. Effects of lesions of the nucleus accumbens core on inter-temporal choice: Further observations with an adjusting-delay procedure , 2009, Behavioural Brain Research.