Drug craving and positive/negative hedonic brain substrates activated by addicting drugs
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[1] R. Wise,et al. Drug‐ and behavior‐associated changes in dopamine‐related electrochemical signals during intravenous heroin self‐administration in rats , 1993, Synapse.
[2] N. S. Miller,et al. Perspectives of effective treatment for alcohol and drug disorders. , 1993, The Psychiatric clinics of North America.
[3] R. Wise,et al. Acute depolarization block of A10 dopamine neurons: interactions of morphine with dopamine antagonists , 1992, Brain Research.
[4] L. Parsons,et al. Basal extracellular dopamine is decreased in the rat nucleus accumbens during abstinence from chronic cocaine , 1991, Synapse.
[5] L. Parsons,et al. Extracellular Concentrations of Cocaine and Dopamine Are Enhanced During Chronic Cocaine Administration , 1990, Journal of neurochemistry.
[6] G. Chiara,et al. Amphetamine, cocaine, phencyclidine and nomifensine increase extracellular dopamine concentrations preferentially in the nucleus accumbens of freely moving rats , 1989, Neuroscience.
[7] F. Bloom,et al. Opponent process theory of motivation: Neurobiological evidence from studies of opiate dependence , 1989, Neuroscience & Biobehavioral Reviews.
[8] R. Wise,et al. Behavioral evidence for midbrain dopamine depolarization inactivation , 1989, Brain Research.
[9] F. Bloom,et al. Cellular and molecular mechanisms of drug dependence. , 1988, Science.
[10] G. Vaillant. What can long-term follow-up teach us about relapse and prevention of relapse in addiction? , 1988, British journal of addiction.
[11] P. Vezina,et al. A comparison of the effects of intra-accumbens injections of amphetamine and morphine on reinstatement of heroin intravenous self-administration behavior , 1988, Brain Research.
[12] P. Duffy,et al. Behavioral and neurochemical effects of acute and daily cocaine administration in rats. , 1988, The Journal of pharmacology and experimental therapeutics.
[13] P. Kalivas,et al. Effects of Daily Cocaine and Morphine Treatment on Somatodendritic and Terminal Field Dopamine Release , 1988, Journal of neurochemistry.
[14] M. Ulissey,et al. Chronic cocaine administration decreases dopamine synthesis rate and increases [3H] spiroperidol binding in rat brain , 1987, Brain Research Bulletin.
[15] M. Gold,et al. The physiology of cocaine craving and 'crashing'. , 1987, Archives of general psychiatry.
[16] H. Kleber,et al. Abstinence symptomatology and psychiatric diagnosis in cocaine abusers. Clinical observations. , 1986, Archives of general psychiatry.
[17] M. Gold,et al. New concepts in cocaine addiction: The dopamine depletion hypothesis , 1985, Neuroscience & Biobehavioral Reviews.
[18] P. Broderick. In vivo electrochemical studies of rat striatal dopamine and serotonin release after morphine. , 1985, Life sciences.
[19] M. Gold,et al. BROMOCRIPTINE AS TREATMENT OF COCAINE ABUSE , 1985, The Lancet.
[20] Jane Stewart,et al. Reinstatement of heroin and cocaine self-administration behavior in the rat by intracerebral application of morphine in the ventral tegmental area , 1984, Pharmacology Biochemistry and Behavior.
[21] R. Wise,et al. Anatomically distinct opiate receptor fields mediate reward and physical dependence. , 1984, Science.
[22] D. German,et al. Electrophysiological evidence for excitation of rat ventral tegmental area dopamine neurons by morphine , 1984, Neuroscience.
[23] Michael A. Bozarth,et al. Brain reward circuitry: Four circuit elements “wired” in apparent series , 1984, Brain Research Bulletin.
[24] J. Stewart. Conditioned and unconditioned drug effects in relapse to opiate and stimulant drug self-administration , 1983, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[25] K. Gysling,et al. Morphine-induced activation of A10 dopamine neurons in the rat , 1983, Brain Research.
[26] A. Caggiula,et al. The effects of low doses of morphine on the activity of dopamine-containing cells and on behavior. , 1982, Life sciences.
[27] R. K. Siegel. The Don Juan Papers. Further Castaneda Controversies , 1982 .
[28] J. Nazzaro,et al. Morphine differentially affects ventral tegmental and substantia nigra brain reward thresholds , 1981, Pharmacology Biochemistry and Behavior.
[29] R. Solomon. The opponent-process theory of acquired motivation: the costs of pleasure and the benefits of pain. , 1980, The American psychologist.
[30] E. Gardner,et al. Enhancement of self-stimulation behavior in rats and monkeys after chronic neuroleptic treatment: Evidence for mesolimbic supersensitivity , 1979, Brain Research.
[31] A. Routtenberg. The reward system of the brain. , 1978, Scientific American.
[32] S. Pradhan,et al. Behavioural and neurochemical effects of repeated administration of cocaine in rats , 1978, Neuropharmacology.
[33] Z. Annau,et al. Behavioral withdrawal following several psychoactive drugs , 1977, Pharmacology Biochemistry and Behavior.
[34] R. Stretch,et al. Drug-induced reinstatement of extinguished self-administration behavior in monkeys , 1975, Pharmacology Biochemistry and Behavior.
[35] C. Schuster,et al. Suppression of cocaine self-administration by extinction and punishment. , 1974, Pharmacology, biochemistry, and behavior.
[36] H. Loh,et al. Brain sites of precipitated abstinence in morphine-dependent rats. , 1973, The Journal of pharmacology and experimental therapeutics.
[37] W HODOS,et al. Progressive Ratio as a Measure of Reward Strength , 1961, Science.
[38] James L Olds,et al. Positive reinforcement produced by electrical stimulation of septal area and other regions of rat brain. , 1954, Journal of comparative and physiological psychology.
[39] J. Jaffe,et al. Current concepts of addiction. , 1992, Research publications - Association for Research in Nervous and Mental Disease.
[40] R. Ehrman,et al. A learning model of addiction. , 1992, Research publications - Association for Research in Nervous and Mental Disease.
[41] L. Dwoskin,et al. Repeated cocaine administration results in supersensitivity of striatal D-2 dopamine autoreceptors to pergolide. , 1988, Life sciences.
[42] T. Yanagita. Prediction of Drug Abuse Liability from Animal Studies , 1987 .
[43] R. Yokel. Intravenous Self-Administration: Response Rates, the Effects of Pharmacological Challenges, and Drug Preference , 1987 .
[44] J. L. Fobes,et al. The central basis of motivation: intracranial self-stimulation studies. , 1981, Annual review of psychology.
[45] R. Wise,et al. Non-selective enhancement of locus coeruleus and substantia nigra self-stimulation after termination of chronic dopaminergic receptor blockade with pimozide in rats. , 1976, Psychopharmacology communications.
[46] E. Rolls. The brain and reward , 1975 .