Striatal sensitivity to reward deliveries and omissions in substance dependent patients
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[1] K. Berridge,et al. Incentive-sensitization and addiction. , 2001, Addiction.
[2] Murray B. Stein,et al. Anterior cingulate activation in high trait anxious subjects is related to altered error processing during decision making , 2004, Biological Psychiatry.
[3] G. Coffman,et al. Associations between alcohol and cocaine use in a sample of problem-drinking employees. , 1991, Journal of studies on alcohol.
[4] Michael Bauer,et al. Reward anticipation and outcomes in adult males with attention-deficit/hyperactivity disorder , 2008, NeuroImage.
[5] W. Bickel,et al. Toward a behavioral economic understanding of drug dependence: delay discounting processes. , 2001, Addiction.
[6] N. Volkow,et al. Subjective sensitivity to monetary gradients is associated with frontolimbic activation to reward in cocaine abusers. , 2007, Drug and alcohol dependence.
[7] D. Kahneman,et al. Functional Imaging of Neural Responses to Expectancy and Experience of Monetary Gains and Losses tasks with monetary payoffs , 2001 .
[8] A. Craig. Forebrain emotional asymmetry: a neuroanatomical basis? , 2005, Trends in Cognitive Sciences.
[9] A. Holmes,et al. Dissociation of neural regions associated with anticipatory versus consummatory phases of incentive processing. , 2007, Psychophysiology.
[10] Samuel M. McClure,et al. Separate Neural Systems Value Immediate and Delayed Monetary Rewards , 2004, Science.
[11] Osamu Kitamura,et al. Conditioned Withdrawal Drives Heroin Consumption and Decreases Reward Sensitivity , 2006, The Journal of Neuroscience.
[12] R. R. Abidin. Psychological Assessment Resources , 1995 .
[13] W. Schultz. Behavioral dopamine signals , 2007, Trends in Neurosciences.
[14] G. Staines,et al. Polysubstance Use Among Alcoholics , 2001, Journal of addictive diseases.
[15] M. Delgado,et al. Motivation-dependent responses in the human caudate nucleus. , 2004, Cerebral cortex.
[16] R. Mulder. Alcoholism and Personality , 2002, The Australian and New Zealand journal of psychiatry.
[17] Matthew T. Kaufman,et al. Distributed Neural Representation of Expected Value , 2005, The Journal of Neuroscience.
[18] S. Whiteside,et al. The Five Factor Model and impulsivity: using a structural model of personality to understand impulsivity , 2001 .
[19] A. Hariri,et al. Genetic variation in components of dopamine neurotransmission impacts ventral striatal reactivity associated with impulsivity , 2009, Molecular Psychiatry.
[20] Brian Knutson,et al. Valence and salience contribute to nucleus accumbens activation , 2008, NeuroImage.
[21] K O Lim,et al. Brain gray and white matter volume loss accelerates with aging in chronic alcoholics: a quantitative MRI study. , 1992, Alcoholism, clinical and experimental research.
[22] K. Zilles,et al. Differential brain activation according to chronic social reward frustration , 2005, Neuroreport.
[23] A. Hariri,et al. Preference for Immediate over Delayed Rewards Is Associated with Magnitude of Ventral Striatal Activity , 2006, The Journal of Neuroscience.
[24] G F Koob,et al. Postcocaine anhedonia: An animal model of cocaine withdrawal and its reversal by pharmacological treatments Athina Markou, M.A., Richard L. Hauger, M.D., George F. Koob, Ph.D. Department of Neuropharmacology, Research Institute of Scripps Clinic, La Jolla, CA 92037 , 1991, Biological Psychiatry.
[25] S. Lane,et al. Analysis of risk taking in adults with a history of high risk behavior. , 2000, Drug and alcohol dependence.
[26] Gary H. Glover,et al. Sensitivity of the nucleus accumbens to violations in expectation of reward , 2007, NeuroImage.
[27] Jeffrey C. Cooper,et al. Functional magnetic resonance imaging of reward prediction , 2005, Current opinion in neurology.
[28] R. L. Collins,et al. Substance use in young adults: associations with personality and gender. , 2005, Addictive behaviors.
[29] G. Koob,et al. Plasticity of reward neurocircuitry and the 'dark side' of drug addiction , 2005, Nature Neuroscience.
[30] Jerome R. Busemeyer,et al. Using Cognitive Models to Map Relations Between Neuropsychological Disorders and Human Decision-Making Deficits , 2005, Psychological science.
[31] M. Ernst,et al. Brain imaging studies of cocaine abuse: implications for medication development. , 1999, Critical reviews in neurobiology.
[32] E. Butelman,et al. Genetic influences on impulsivity, risk taking, stress responsivity and vulnerability to drug abuse and addiction , 2005, Nature Neuroscience.
[33] D. F. Braus,et al. Alcohol-associated stimuli activate the ventral striatum in abstinent alcoholics , 2001, Journal of Neural Transmission.
[34] Corianne Rogalsky,et al. Increased activation in the right insula during risk-taking decision making is related to harm avoidance and neuroticism , 2003, NeuroImage.
[35] Decreased brain reward produced by ethanol withdrawal. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[36] N. Martin,et al. Common genetic risk factors for conduct disorder and alcohol dependence. , 1998, Journal of abnormal psychology.
[37] J. Valls-Solé,et al. Autonomic and peripheral neuropathies in patients with chronic alcoholism. A dose-related toxic effect of alcohol. , 1995, Archives of neurology.
[38] Konstantin Voronin,et al. Differential Brain Activity in Alcoholics and Social Drinkers to Alcohol Cues: Relationship to Craving , 2004, Neuropsychopharmacology.
[39] R. Kessler,et al. Lifetime co-occurrence of DSM-III-R alcohol abuse and dependence with other psychiatric disorders in the National Comorbidity Survey. , 1997, Archives of general psychiatry.
[40] A. Redish,et al. Addiction as a Computational Process Gone Awry , 2004, Science.
[41] Thorsten Kahnt,et al. Brain activation elicited by affectively positive stimuli is associated with a lower risk of relapse in detoxified alcoholic subjects. , 2007, Alcoholism, clinical and experimental research.
[42] R W Cox,et al. AFNI: software for analysis and visualization of functional magnetic resonance neuroimages. , 1996, Computers and biomedical research, an international journal.
[43] Murray B. Stein,et al. Intolerance of uncertainty correlates with insula activation during affective ambiguity , 2008, Neuroscience Letters.
[44] Brian Knutson,et al. A region of mesial prefrontal cortex tracks monetarily rewarding outcomes: characterization with rapid event-related fMRI , 2003, NeuroImage.
[45] 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.
[46] G. Koob,et al. Differential effects of withdrawal from chronic amphetamine or fluoxetine administration on brain stimulation reward in the rat – interactions between the two drugs , 1999, Psychopharmacology.
[47] 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.
[48] G. Koob,et al. Dramatic decreases in brain reward function during nicotine withdrawal , 1998, Nature.
[49] Samuel M. McClure,et al. Temporal Prediction Errors in a Passive Learning Task Activate Human Striatum , 2003, Neuron.
[50] Julie C. Stout,et al. Neurocognitive insights into substance abuse , 2005, Trends in Cognitive Sciences.
[51] Brian Knutson,et al. Incentive-Elicited Brain Activation in Adolescents: Similarities and Differences from Young Adults , 2004, The Journal of Neuroscience.
[52] A. Villringer,et al. Role of ventral striatum in reward-based decision making , 2007, Neuroreport.
[53] H. Flor,et al. Cue-induced activation of the striatum and medial prefrontal cortex is associated with subsequent relapse in abstinent alcoholics , 2004, Psychopharmacology.
[54] K. Kendler,et al. The structure of genetic and environmental risk factors for common psychiatric and substance use disorders in men and women. , 2003, Archives of general psychiatry.
[55] Brian Knutson,et al. Dysfunction of reward processing correlates with alcohol craving in detoxified alcoholics , 2007, NeuroImage.
[56] Ashley R. Smith,et al. Reduced posterior mesofrontal cortex activation by risky rewards in substance-dependent patients. , 2008, Drug and alcohol dependence.
[57] C. Li,et al. Imaging stress- and cue-induced drug and alcohol craving: association with relapse and clinical implications. , 2007, Drug and alcohol review.
[58] Steven W Anderson,et al. Decision-making deficits, linked to a dysfunctional ventromedial prefrontal cortex, revealed in alcohol and stimulant abusers , 2001, Neuropsychologia.
[59] D. Hommer,et al. Impulsivity in abstinent alcohol-dependent patients: relation to control subjects and type 1-/type 2-like traits. , 2004, Alcohol.
[60] A. Bechara. Decision making, impulse control and loss of willpower to resist drugs: a neurocognitive perspective , 2005, Nature Neuroscience.
[61] Karl J. Friston,et al. Temporal Difference Models and Reward-Related Learning in the Human Brain , 2003, Neuron.
[62] Daniel W. Hommer,et al. Anticipating instrumentally obtained and passively-received rewards: A factorial fMRI investigation , 2007, Behavioural Brain Research.
[63] Sarah Fischer,et al. On the Validity and Utility of Discriminating Among Impulsivity-Like Traits , 2007, Assessment.
[64] Samuel M. McClure,et al. The Neural Substrates of Reward Processing in Humans: The Modern Role of fMRI , 2004, The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry.
[65] Karl J. Friston,et al. Dissociable Neural Responses in Human Reward Systems , 2000, The Journal of Neuroscience.
[66] L. Clark,et al. Persistence predicts latency to relapse following inpatient treatment for alcohol dependence. , 1997, Addictive behaviors.
[67] Thomas J. H. Chen,et al. The Reward Deficiency Syndrome: A Biogenetic Model for the Diagnosis and Treatment of Impulsive, Addictive and Compulsive Behaviors , 2000, Journal of psychoactive drugs.
[68] Dirk J. Heslenfeld,et al. Activity in human reward-sensitive brain areas is strongly context dependent , 2005, NeuroImage.
[69] Samuel M. McClure,et al. Predictability Modulates Human Brain Response to Reward , 2001, The Journal of Neuroscience.
[70] Jerome R Busemeyer,et al. Cognitive modeling analysis of decision-making processes in cocaine abusers , 2004, Psychonomic bulletin & review.
[71] W. Bickel,et al. Behavioral and neuroeconomics of drug addiction: competing neural systems and temporal discounting processes. , 2007, Drug and alcohol dependence.
[72] Brian Knutson,et al. Ventral Striatal Hyporesponsiveness During Reward Anticipation in Attention-Deficit/Hyperactivity Disorder , 2007, Biological Psychiatry.
[73] Hermano Tavares,et al. Comparison of craving between pathological gamblers and alcoholics. , 2005, Alcoholism, clinical and experimental research.
[74] J. Newman,et al. Diverse pathways to deficient self-regulation: Implications for disinhibitory psychopathology in children , 1993 .
[75] G. Pagnoni,et al. Human Striatal Responses to Monetary Reward Depend On Saliency , 2004, Neuron.
[76] Matthew W. Johnson,et al. Delay discounting in currently using and currently abstinent cocaine-dependent outpatients and non-drug-using matched controls. , 2006, Addictive behaviors.
[77] J. O'Doherty,et al. Reward representations and reward-related learning in the human brain: insights from neuroimaging , 2004, Current Opinion in Neurobiology.
[78] M. Paulus,et al. An Insular View of Anxiety , 2006, Biological Psychiatry.
[79] L. Parsons,et al. Neurobiological mechanisms in the transition from drug use to drug dependence , 2004, Neuroscience & Biobehavioral Reviews.
[80] Brian Knutson,et al. Anticipation of Increasing Monetary Reward Selectively Recruits Nucleus Accumbens , 2001, The Journal of Neuroscience.