Matches in SemOpenAlex for { <https://semopenalex.org/work/W41097508> ?p ?o ?g. }
- W41097508 endingPage "381" @default.
- W41097508 startingPage "354" @default.
- W41097508 abstract "Back to table of contents Previous article Next article Full AccessThe accumbens: beyond the core-shell dichotomyPublished Online:1 Apr 2006https://doi.org/10.1176/jnp.9.3.354AboutSectionsView articleAbstractPDF/EPUB ToolsAdd to favoritesDownload CitationsTrack Citations ShareShare onFacebookTwitterLinked InEmail View articleAbstractThis article highlights recent discoveries related to the accumbens and closely associated structures, with special reference to their importance in neuropsychiatry. The development of striatal patches in the accumbens is reviewed in a series of pictures. Neuronal ensembles are discussed as potentially important functional-anatomical units. Attention is also drawn to recent discoveries related to the neuronal circuits that the primate accumbens establishes with the mesencephalic dopamine system. On the basis of histological and neurochemical differences, the accumbens has been divided into core and shell compartments. In the context of this article, the shell, which is an especially diversified part of the accumbens, is the subject of special attention because of its close relation to the extended amygdala and distinctive response to antipsychotic and psychoactive drugs. FiguresReferencesCited byDetailsCited BySynaptic ensembles between raphe and D 1 R-containing accumbens shell neurons underlie postisolation sociability in malesScience Advances, Vol. 8, No. 41Role of the striatal dopamine, GABA and opioid systems in mediating feeding and fat intakeNeuroscience & Biobehavioral Reviews, Vol. 139Anterior Insular-nucleus Accumbens Pathway Controls Refeeding-induced Analgesia under Chronic Inflammatory Pain ConditionNeuroscience, Vol. 495Neuroadaptations and TGF-β signaling: emerging role in models of neuropsychiatric disorders15 June 2021 | Molecular Psychiatry, Vol. 27, No. 1The effect of the mGlu8 receptor agonist, (S)-3,4-DCPG on acquisition and expression of morphine-induced conditioned place preference in male rats21 February 2021 | Behavioral and Brain Functions, Vol. 17, No. 1The Periaqueductal Gray and Its Extended Participation in Drug Addiction Phenomena24 July 2021 | Neuroscience Bulletin, Vol. 37, No. 10Modeling nucleus accumbens9 November 2020 | Journal of Computational Neuroscience, Vol. 49, No. 1Microinjection of the BDNF receptor antagonist ANA-12 into the nucleus accumbens and medial-prefrontal cortex attenuates morphine-induced reward memory, and alterations of BDNF levels and apoptotic cells in ratsPharmacology Biochemistry and Behavior, Vol. 201Effects of 3-Month Exposure to E-Cigarette Aerosols on Glutamatergic Receptors and Transporters in Mesolimbic Brain Regions of Female C57BL/6 Mice29 October 2020 | Toxics, Vol. 8, No. 4Ayahuasca blocks the reinstatement of methylphenidate-induced conditioned place preference in mice: behavioral and brain Fos expression evaluations16 July 2020 | Psychopharmacology, Vol. 237, No. 11Divergent projections of the prelimbic cortex bidirectionally regulate active avoidance15 October 2020 | eLife, Vol. 9Postnatal functional inactivation of the ventral subiculum enhances dopaminergic responses in the core part of the nucleus accumbens following ketamine injection in adult ratsNeurochemistry International, Vol. 137Neurotensin in reward processesNeuropharmacology, Vol. 167Parcellation of the striatal complex into dorsal and ventral districts13 March 2020 | Proceedings of the National Academy of Sciences, Vol. 117, No. 13Brain-Wide Mapping of Afferent Inputs to Accumbens Nucleus Core Subdomains and Accumbens Nucleus Subnuclei18 March 2020 | Frontiers in Systems Neuroscience, Vol. 14The Limbic System19 June 2020Alcohol and Alcoholism, Vol. 55, No. 3Molecular Plasticity of the Nucleus Accumbens Revisited—Astrocytic Waves Shall Rise27 May 2019 | Molecular Neurobiology, Vol. 56, No. 12Fos expression induced by olanzapine and risperidone in the central extended amygdalaEuropean Journal of Pharmacology, Vol. 865Cell-type and region-specific nucleus accumbens AMPAR plasticity associated with morphine reward, reinstatement, and spontaneous withdrawal14 June 2019 | Brain Structure and Function, Vol. 224, No. 7Neural Circuit Plasticity in AddictionNeurobiology of Learning and Memory, Vol. 162Pharmacological Research, Vol. 139European Journal of Neuroscience, Vol. 50, No. 3Opioid and Psychostimulant Plasticity: Targeting Overlap in Nucleus Accumbens Glutamate SignalingTrends in Pharmacological Sciences, Vol. 39, No. 3Journal of Neuroscience Research, Vol. 96, No. 9Neuropharmacology, Vol. 138Abundant collateralization of temporal lobe projections to the accumbens, bed nucleus of stria terminalis, central amygdala and lateral septum4 October 2016 | Brain Structure and Function, Vol. 222, No. 4, Vol. 17Cell Reports, Vol. 20, No. 8Drug and Alcohol Dependence, Vol. 175Neuropharmacology, Vol. 122Neurobiology of Learning and Memory, Vol. 140Frontiers in Neuroanatomy, Vol. 11Psychopharmacology, Vol. 233, No. 11Journal of Molecular Neuroscience, Vol. 58, No. 4Alcohol, Vol. 50Behavioural Brain Research, Vol. 315Journal of Chemical Neuroanatomy, Vol. 78Neuroscience & Biobehavioral Reviews, Vol. 65Pharmacological Reviews, Vol. 68, No. 3Frontiers in Neuroanatomy, Vol. 10World Journal of Neuroscience, Vol. 06, No. 03Dopaminergic and cholinergic learning mechanisms in nicotine addiction24 August 2015 | Annals of the New York Academy of Sciences, Vol. 1349, No. 1Assessing contributions of nucleus accumbens shell subregions to reward-seeking behaviorDrug and Alcohol Dependence, Vol. 153Psychopharmacology, Vol. 232, No. 8Neuroscience & Biobehavioral Reviews, Vol. 56Neuropharmacology, Vol. 89Neuroscience, Vol. 301Schizophrenia Bulletin, Vol. 41, No. 5European Journal of Neuroscience, Vol. 41, No. 12The Nucleus Accumbens: A Comprehensive Review18 February 2015 | Stereotactic and Functional Neurosurgery, Vol. 93, No. 2PLOS ONE, Vol. 10, No. 6Frontiers in Neuroanatomy, Vol. 9Frontiers in Behavioral Neuroscience, Vol. 9Frontiers in Psychiatry, Vol. 6, Vol. 125Neurobiology of Disease, Vol. 71Neuroscience, Vol. 271Neuroscience, Vol. 275Neuroscience, Vol. 282The International Journal of Neuropsychopharmacology, Vol. 17, No. 03Brain, Vol. 137, No. 4Acta Neuropathologica Communications, Vol. 2, No. 1Acta Neuropathologica Communications, Vol. 2, No. 1PLoS ONE, Vol. 9, No. 5Frontiers in Behavioral Neuroscience, Vol. 8Frontiers in Cellular Neuroscience, Vol. 8Frontiers in Neurology, Vol. 5Journal of Comparative Neurology, Vol. 521, No. 14Psychopharmacology, Vol. 229, No. 3Brain Structure and Function, Vol. 218, No. 5Brain Structure and Function, Vol. 218, No. 6Behavioural Brain Research, Vol. 241Biological Psychiatry, Vol. 74, No. 2Child and Adolescent Psychiatric Clinics of North America, Vol. 22, No. 1Pharmacology Biochemistry and Behavior, Vol. 110European Journal of Neuroscience, Vol. 37, No. 6Neuroscience & Biobehavioral Reviews, Vol. 36, No. 4Pharmacology Biochemistry and Behavior, Vol. 101, No. 1Progress in Neuro-Psychopharmacology and Biological Psychiatry, Vol. 38, No. 1Neuropsychopharmacology, Vol. 37, No. 5Alcohol and Alcoholism, Vol. 47, No. 1Epilepsia, Vol. 53, No. 6Alcoholism: Clinical and Experimental Research, Vol. 36, No. 9Journal of Neurophysiology, Vol. 108, No. 1Nicotine restores morphine-induced memory deficit through the D1 and D2 dopamine receptor mechanisms in the nucleus accumbens26 May 2011 | Journal of Psychopharmacology, Vol. 25, No. 8Accumbens shell AMPA receptors mediate expression of extinguished reward seeking through interactions with basolateral amygdala15 June 2011 | Learning & Memory, Vol. 18, No. 7The Accumbofrontal Fasciculus in the Human Brain: A Microsurgical Anatomical StudyNeurosurgery, Vol. 68, No. 4The Journal of Comparative Neurology, Vol. 519, No. 7The Journal of Comparative Neurology, Vol. 519, No. 15The Journal of Comparative Neurology, Vol. 519, No. 18Brain, Behavior, and Immunity, Vol. 25, No. 4Brain Research, Vol. 1390Brain Research, Vol. 1424NeuroImage, Vol. 55, No. 1Neuropharmacology, Vol. 61, No. 1-2Progress in Neurobiology, Vol. 95, No. 1Progress in Neuro-Psychopharmacology and Biological Psychiatry, Vol. 35, No. 2Journal of Neuroendocrinology, Vol. 23, No. 11Clinical Psychopharmacology and Neuroscience, Vol. 9, No. 1Basal gangliaWhat the brain teaches us about latent inhibition (LI): the neural substrates of the expression and prevention of LISynapse, Vol. 64, No. 12The Cerebellum, Vol. 9, No. 4Cerebral Cortex, Vol. 20, No. 6Bipolar Disorders, Vol. 12, No. 8European Journal of Neuroscience, Vol. 32, No. 10Annals of the New York Academy of Sciences, Vol. 1187, No. 1, Vol. 58Psychopharmacology, Vol. 204, No. 4Best Practice & Research Clinical Endocrinology & Metabolism, Vol. 23, No. 1Journal of Chemical Neuroanatomy, Vol. 37, No. 1Neuroscience & Biobehavioral Reviews, Vol. 33, No. 6Neuroscience, Vol. 159, No. 2Parkinsonism & Related Disorders, Vol. 15, No. 3Pharmacology Biochemistry and Behavior, Vol. 93, No. 3Trends in Cognitive Sciences, Vol. 13, No. 8European Journal of Neuroscience, Vol. 29, No. 12Alcoholism: Clinical and Experimental Research, Vol. 33, No. 11Radiology, Vol. 250, No. 3The Journal of Comparative Neurology, Vol. 511, No. 5Physiology of the normal and dopamine-depleted basal ganglia: Insights into levodopa pharmacotherapy9 September 2008 | Movement Disorders, Vol. 23, No. S3Brain Structure and Function, Vol. 213, No. 1-2Brain Structure and Function, Vol. 213, No. 1-2Brain Structure and Function, Vol. 213, No. 1-2Biochemical Pharmacology, Vol. 75, No. 1Brain Research Reviews, Vol. 58, No. 2European Journal of Pharmacology, Vol. 579, No. 1-3Journal of Chemical Neuroanatomy, Vol. 36, No. 3-4Neurochemistry International, Vol. 52, No. 3Neuropharmacology, Vol. 55, No. 2Neuroscience, Vol. 154, No. 4The Nucleus Accumbens and Pavlovian Reward Learning29 June 2016 | The Neuroscientist, Vol. 13, No. 2Omega-3 Fatty Acid Ethyl-Eicosapentaenoate Attenuates IL-1β-Induced Changes in Dopamine and Metabolites in the Shell of the Nucleus Accumbens: Involved with PLA2 Activity and Corticosterone Secretion14 June 2006 | Neuropsychopharmacology, Vol. 32, No. 3The Journal of Comparative Neurology, Vol. 501, No. 2Developmental Neurobiology, Vol. 67, No. 8Psychopharmacology, Vol. 191, No. 3The Evolution of the Basal Ganglia in Mammals and Other VertebratesBrain Research Reviews, Vol. 56, No. 1Brain Research Reviews, Vol. 56, No. 2International Journal of Psychophysiology, Vol. 63, No. 2Neuroscience Letters, Vol. 420, No. 2Neuroscience, Vol. 144, No. 4Psychoneuroendocrinology, Vol. 32, No. 5Trends in Neurosciences, Vol. 30, No. 5Neuropsychopharmacology, Vol. 32, No. 5European Journal of Neuroscience, Vol. 25, No. 7Journal of Neurochemistry, Vol. 102, No. 5The Journal of Comparative Neurology, Vol. 495, No. 3Synapse, Vol. 60, No. 6Psychopharmacology, Vol. 184, No. 3-4Cell and Tissue Research, Vol. 327, No. 2Behavioural Brain Research, Vol. 170, No. 2Journal of Chemical Neuroanatomy, Vol. 31, No. 3Neuroscience & Biobehavioral Reviews, Vol. 30, No. 2Neuroscience & Biobehavioral Reviews, Vol. 30, No. 2Neuroscience & Biobehavioral Reviews, Vol. 30, No. 2Neuroscience, Vol. 137, No. 3Behavioral Neuroscience, Vol. 120, No. 3Neuropsychopharmacology, Vol. 31, No. 7Neuropsychopharmacology, Vol. 31, No. 10European Journal of Neuroscience, Vol. 23, No. 1European Journal of Neuroscience, Vol. 23, No. 6Annals of the New York Academy of Sciences, Vol. 917, No. 1Annals of the New York Academy of Sciences, Vol. 985, No. 1Basal gangliaThe Journal of Comparative Neurology, Vol. 490, No. 2Zeitschrift für Epileptologie, Vol. 18, No. 4Behavioural Brain Research, Vol. 158, No. 1Brain Research, Vol. 1034, No. 1-2European Journal of Pharmacology, Vol. 526, No. 1-3Neuroscience, Vol. 135, No. 3Seminars in Pain Medicine, Vol. 3, No. 1Behavioral Neuroscience, Vol. 119, No. 5European Journal of Neuroscience, Vol. 22, No. 10The Journal of Comparative Neurology, Vol. 468, No. 3The Journal of Comparative Neurology, Vol. 473, No. 3The Journal of Comparative Neurology, Vol. 473, No. 3The Journal of Comparative Neurology, Vol. 476, No. 4Brain Research, Vol. 997, No. 1Brain Research, Vol. 1011, No. 1Experimental Neurology, Vol. 188, No. 2Neuroscience, Vol. 124, No. 2Neuroscience, Vol. 127, No. 1Pharmacology Biochemistry and Behavior, Vol. 77, No. 3Physiology & Behavior, Vol. 81, No. 2Trends in Neurosciences, Vol. 27, No. 8Neuropsychopharmacology, Vol. 29, No. 4Journal of Neurochemistry, Vol. 86, No. 1Annals of the New York Academy of Sciences, Vol. 1016, No. 1Chemical organization of projection neurons in the rat accumbens nucleus and olfactory tubercleNeuroscience, Vol. 120, No. 3The legacy of the silver methods and the new anatomy of the basal forebrain: Implications for neuropsychiatry and drug abuse27 June 2003 | Scandinavian Journal of Psychology, Vol. 44, No. 3Amygdala pathology in schizophrenia and psychosis of epilepsyCurrent Opinion in Psychiatry, Vol. 16, No. 3Psychopharmacology, Vol. 168, No. 1-2Brain Research, Vol. 963, No. 1-2Brain Research, Vol. 978, No. 1-2Neuroscience Research, Vol. 47, No. 3Neuron, Vol. 38, No. 4Behavioral Neuroscience, Vol. 117, No. 1Neuropsychopharmacology, Vol. 28, No. 4European Journal of Neuroscience, Vol. 17, No. 10Current Opinion in Psychiatry, Vol. 16, No. 3Journal of Neurophysiology, Vol. 89, No. 5The Nucleus Accumbens and Reward: Neurophysiological Investigations in Behaving Animals18 May 2016 | Behavioral and Cognitive Neuroscience Reviews, Vol. 1, No. 4The Journal of Comparative Neurology, Vol. 454, No. 1The Journal of Comparative Neurology, Vol. 454, No. 4, Vol. 54, Vol. 154 / 1Brain Research, Vol. 926, No. 1-2Brain Research, Vol. 958, No. 2Pharmacology Biochemistry and Behavior, Vol. 74, No. 1Behavioural Brain Research, Vol. 131, No. 1-2Behavioural Brain Research, Vol. 137, No. 1-2Neuroscience, Vol. 111, No. 1Neuroscience, Vol. 114, No. 4European Journal of Neuroscience, Vol. 16, No. 3European Journal of Neuroscience, Vol. 16, No. 7Journal of Neurophysiology, Vol. 88, No. 1Book Review: Kaplan & Sadock's Com prehen sive Text book of Psy chi atry. 7th Ed1 February 2001 | The Canadian Journal of Psychiatry, Vol. 46, No. 1The Journal of Comparative Neurology, Vol. 436, No. 1Brain Research, Vol. 905, No. 1-2European Journal of Pharmacology, Vol. 411, No. 1-2Neuropharmacology, Vol. 40, No. 4Behavioural Brain Research, Vol. 120, No. 2Neuron, Vol. 32, No. 5Journal of Neurophysiology, Vol. 85, No. 3Human cocaine‐ and amphetamine‐regulated transcript (CART) mRNA is highly expressed in limbic‐ and sensory‐related brain regions1 September 2000 | Journal of Comparative Neurology, Vol. 425, No. 4Selective increase of dopamine D3 receptor gene expression as a common effect of chronic antidepressant treatments30 June 2000 | Molecular Psychiatry, Vol. 5, No. 4Cortical cell death induced by IL-1 is mediated via actions in the hypothalamus of the rat25 April 2000 | Proceedings of the National Academy of Sciences, Vol. 97, No. 10Hippocampus, Vol. 10, No. 4Synapse, Vol. 37, No. 4Synapse, Vol. 38, No. 3Brain Research, Vol. 866, No. 1-2, Vol. 126Neuroscience & Biobehavioral Reviews, Vol. 24, No. 1Neuroscience, Vol. 99, No. 2Brain Research Bulletin, Vol. 52, No. 5European Journal of Neuroscience, Vol. 12, No. 6Journal of Chronic Fatigue Syndrome, Vol. 6, No. 2Hippocampal and amygdaloid interactions in the nucleus accumbens4 November 2013 | Psychobiology, Vol. 27, No. 2Synapse, Vol. 31, No. 1Journal of Psychosomatic Research, Vol. 47, No. 6Neuroscience & Biobehavioral Reviews, Vol. 23, No. 6Journal of Chemical Neuroanatomy, Vol. 16, No. 3, Vol. 15Annals of the New York Academy of Sciences, Vol. 877, No. 1 ADVANCING FROAnnals of the New York Academy of Sciences, Vol. 877, No. 1 ADVANCING FROAnnals of the New York Academy of Sciences, Vol. 877, No. 1 ADVANCING FROAnnals of the New York Academy of Sciences, Vol. 877, No. 1 ADVANCING FROAnnals of the New York Academy of Sciences, Vol. 877, No. 1 ADVANCING FROAnnals of the New York Academy of Sciences, Vol. 877, No. 1 ADVANCING FROAnnals of the New York Academy of Sciences, Vol. 877, No. 1 ADVANCING FROAnnals of the New York Academy of Sciences, Vol. 877, No. 1 ADVANCING FROAnnals of the New York Academy of Sciences, Vol. 877, No. 1 ADVANCING FROConsidering the Role of the Amygdala in Psychotic IllnessA Clinicopathological CorrelationJulie L. Fudge, M.D., James M. Powers, M.D., Suzanne N. Haber, Ph.D., and Eric D. Caine, M.D.1 November 1998 | The Journal of Neuropsychiatry and Clinical Neurosciences, Vol. 10, No. 4Origin of noradrenergic afferents to the shell subregion of the nucleus accumbens: anterograde and retrograde tract-tracing studies in the ratBrain Research, Vol. 806, No. 2Neuroscience, Vol. 84, No. 4 Volume 9Issue 3 August 1997Pages 354-381 Metrics PDF download History Published online 1 April 2006 Published in print 1 August 1997" @default.
- W41097508 created "2016-06-24" @default.
- W41097508 creator A5028595126 @default.
- W41097508 creator A5029765425 @default.
- W41097508 creator A5032145645 @default.
- W41097508 creator A5039976025 @default.
- W41097508 creator A5041533181 @default.
- W41097508 creator A5065643865 @default.
- W41097508 creator A5080312056 @default.
- W41097508 date "1997-08-01" @default.
- W41097508 modified "2023-10-10" @default.
- W41097508 title "The accumbens: beyond the core-shell dichotomy" @default.
- W41097508 cites W111713383 @default.
- W41097508 cites W1513126258 @default.
- W41097508 cites W1519202038 @default.
- W41097508 cites W1524346434 @default.
- W41097508 cites W1538959478 @default.
- W41097508 cites W1548466807 @default.
- W41097508 cites W1562438742 @default.
- W41097508 cites W1629485274 @default.
- W41097508 cites W16397587 @default.
- W41097508 cites W1796200935 @default.
- W41097508 cites W1825807651 @default.
- W41097508 cites W1929205930 @default.
- W41097508 cites W1964240411 @default.
- W41097508 cites W1964795016 @default.
- W41097508 cites W1969450540 @default.
- W41097508 cites W1970992086 @default.
- W41097508 cites W1972664525 @default.
- W41097508 cites W1972883529 @default.
- W41097508 cites W1973399353 @default.
- W41097508 cites W1974027938 @default.
- W41097508 cites W1976145043 @default.
- W41097508 cites W1978259628 @default.
- W41097508 cites W1979266375 @default.
- W41097508 cites W1979603435 @default.
- W41097508 cites W1981065427 @default.
- W41097508 cites W1982414338 @default.
- W41097508 cites W1984938155 @default.
- W41097508 cites W1985363856 @default.
- W41097508 cites W1989543084 @default.
- W41097508 cites W1989713715 @default.
- W41097508 cites W1990485675 @default.
- W41097508 cites W1995658302 @default.
- W41097508 cites W1996535168 @default.
- W41097508 cites W1999686901 @default.
- W41097508 cites W1999813581 @default.
- W41097508 cites W2000363595 @default.
- W41097508 cites W2000890192 @default.
- W41097508 cites W2001865657 @default.
- W41097508 cites W2001871185 @default.
- W41097508 cites W2003289804 @default.
- W41097508 cites W2005111389 @default.
- W41097508 cites W2005657014 @default.
- W41097508 cites W2005997674 @default.
- W41097508 cites W2006780016 @default.
- W41097508 cites W2010015246 @default.
- W41097508 cites W2013622904 @default.
- W41097508 cites W2013851440 @default.
- W41097508 cites W2014415095 @default.
- W41097508 cites W2014777240 @default.
- W41097508 cites W2015211750 @default.
- W41097508 cites W2016648535 @default.
- W41097508 cites W2018605089 @default.
- W41097508 cites W2019062369 @default.
- W41097508 cites W2019645577 @default.
- W41097508 cites W2021178076 @default.
- W41097508 cites W2021282423 @default.
- W41097508 cites W2022104671 @default.
- W41097508 cites W2022233762 @default.
- W41097508 cites W2023379737 @default.
- W41097508 cites W2031639949 @default.
- W41097508 cites W2031951620 @default.
- W41097508 cites W2035590629 @default.
- W41097508 cites W2037104097 @default.
- W41097508 cites W2037653067 @default.
- W41097508 cites W2038012828 @default.
- W41097508 cites W2040749203 @default.
- W41097508 cites W2041623442 @default.
- W41097508 cites W2043207588 @default.
- W41097508 cites W2047336493 @default.
- W41097508 cites W2050295909 @default.
- W41097508 cites W2053418274 @default.
- W41097508 cites W2054983215 @default.
- W41097508 cites W2055207238 @default.
- W41097508 cites W2055686502 @default.
- W41097508 cites W2057135100 @default.
- W41097508 cites W2057787317 @default.
- W41097508 cites W2058037429 @default.
- W41097508 cites W2060236614 @default.
- W41097508 cites W2060654281 @default.
- W41097508 cites W2060796055 @default.
- W41097508 cites W2062610641 @default.
- W41097508 cites W2064521170 @default.
- W41097508 cites W2065509982 @default.
- W41097508 cites W2065928729 @default.
- W41097508 cites W2071280486 @default.
- W41097508 cites W2072060777 @default.