Inactivation of the prelimbic or infralimbic cortex impairs decision-making in the rat gambling task
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  • 作者:Fiona D. Zeeb ; P. J. J. Baarendse ; L. J. M. J. Vanderschuren…
  • 关键词:Anterior cingulate cortex ; Decision ; making ; Dopamine receptor ; Infralimbic cortex ; Orbitofrontal cortex ; Prelimbic cortex ; Rat gambling task ; Reward ; Punishment ; Probability
  • 刊名:Psychopharmacology
  • 出版年:2015
  • 出版时间:December 2015
  • 年:2015
  • 卷:232
  • 期:24
  • 页码:4481-4491
  • 全文大小:1,441 KB
  • 参考文献:Baarendse PJJ, Vanderschuren LJMJ (2012) Dissociable effects of monoamine reuptake inhibitors on distinct forms of impulsive behavior in rats. Psychopharmacology (Berl) 219:313鈥?26. doi:10.鈥?007/鈥媠00213-011-2576-x CrossRef
    Baarendse PJJ, Winstanley CA, Vanderschuren LJMJ (2013) Simultaneous blockade of dopamine and noradrenaline reuptake promotes disadvantageous decision making in a rat gambling task. Psychopharmacology (Berl) 225:719鈥?31. doi:10.鈥?007/鈥媠00213-012-2857-z CrossRef
    Barch DM, Braver TS, Akbudak E et al (2001) Anterior cingulate cortex and response conflict: effects of response modality and processing domain. Cereb Cortex 11:837鈥?48CrossRef PubMed
    Bechara A, Damasio AR, Damasio H, Anderson SW (1994) Insensitivity to future consequences following damage to human prefrontal cortex. Cognition 50:7鈥?5CrossRef PubMed
    Bechara A, Tranel D, Damasio H, Damasio AR (1996) Failure to respond autonomically to anticipated future outcomes following damage to prefrontal cortex. Cereb Cortex 6:215鈥?25. doi:10.鈥?093/鈥媍ercor/鈥?.鈥?.鈥?15 CrossRef PubMed
    Bechara A, Damasio H, Damasio AR, Lee GP (1999) Different contributions of the human amygdala and ventromedial prefrontal cortex to decision-making. J Neurosci 19:5473鈥?481PubMed
    Bechara A, Tranel D, Damasio H (2000) Characterization of the decision-making deficit of patients with ventromedial prefrontal cortex lesions. Brain 123(Pt 11):2189鈥?202CrossRef PubMed
    Bechara A, Dolan S, Denburg N et al (2001) Decision-making deficits, linked to a dysfunctional ventromedial prefrontal cortex, revealed in alcohol and stimulant abusers. Neuropsychologia 39:376鈥?89CrossRef PubMed
    Behrens TEJ, Woolrich MW, Walton ME, Rushworth MFS (2007) Learning the value of information in an uncertain world. Nat Neurosci 10:1214鈥?221. doi:10.鈥?038/鈥媙n1954 CrossRef PubMed
    Bolla KI, Eldreth DA, London ED et al (2003) Orbitofrontal cortex dysfunction in abstinent cocaine abusers performing a decision-making task. Neuroimage 19:1085鈥?094PubMedCentral CrossRef PubMed
    Botvinick M, Nystrom LE, Fissell K et al (1999) Conflict monitoring versus selection-for-action in anterior cingulate cortex. Nature 402:179鈥?81. doi:10.鈥?038/鈥?6035 CrossRef PubMed
    Boulougouris V, Dalley JW, Robbins TW (2007) Effects of orbitofrontal, infralimbic and prelimbic cortical lesions on serial spatial reversal learning in the rat. Behav Brain Res 179:219鈥?28. doi:10.鈥?016/鈥媕.鈥媌br.鈥?007.鈥?2.鈥?05 CrossRef PubMed
    Cardinal RN (2006) Neural systems implicated in delayed and probabilistic reinforcement. Neural Netw Off J Int Neural Netw Soc 19:1277鈥?301. doi:10.鈥?016/鈥媕.鈥媙eunet.鈥?006.鈥?3.鈥?04 CrossRef
    Cardinal RN, Pennicott DR, Sugathapala CL et al (2001) Impulsive choice induced in rats by lesions of the nucleus accumbens core. Science 292:2499鈥?501. doi:10.鈥?126/鈥媠cience.鈥?060818 CrossRef PubMed
    Cella M, Dymond S, Cooper A (2010) Impaired flexible decision-making in major depressive disorder. J Affect Disord 124:207鈥?10. doi:10.鈥?016/鈥媕.鈥媕ad.鈥?009.鈥?1.鈥?13 CrossRef PubMed
    Chudasama Y, Passetti F, Rhodes SE, Lopian D, Desai A, Robbins TW (2003) 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. Behav Brain Res 146(1鈥?):105鈥?9
    Clark L, Manes F, Antoun N et al (2003) The contributions of lesion laterality and lesion volume to decision-making impairment following frontal lobe damage. Neuropsychologia 41:1474鈥?483CrossRef PubMed
    Connolly NP, Kim JS, Tunstall BJ, Kearns DN (2015) A test of stress, cues, and re-exposure to large wins as potential reinstaters of suboptimal decision making in rats. Front Psychol 6:394. doi:10.鈥?389/鈥媐psyg.鈥?015.鈥?0394
    Dalley JW, Cardinal RN, Robbins TW (2004) Prefrontal executive and cognitive functions in rodents: neural and neurochemical substrates. Neurosci Biobehav Rev 28:771鈥?84. doi:10.鈥?016/鈥媕.鈥媙eubiorev.鈥?004.鈥?9.鈥?06 CrossRef PubMed
    Eagle DM, Baunez C, Hutcheson DM, Lehmann O, Shah AP, Robbins TW (2008) Stop-signal reaction-time task performance: role of prefrontal cortex and subthalamic nucleus. Cereb Cortex 18(1):178鈥?88
    Ernst M, Bolla K, Mouratidis M et al (2002) Decision-making in a risk-taking task: a PET study. Neuropsychopharmacology 26:682鈥?91. doi:10.鈥?016/鈥婼0893-133X(01)00414-6 CrossRef PubMed
    Fellows LK, Farah MJ (2005) Different underlying impairments in decision-making following ventromedial and dorsolateral frontal lobe damage in humans. Cereb Cortex 15:58鈥?3. doi:10.鈥?093/鈥媍ercor/鈥媌hh108 CrossRef PubMed
    Fitoussi A, Le Moine C, De Deurwaerd猫re P et al (2014) Prefronto-subcortical imbalance characterizes poor decision-making: neurochemical and neural functional evidences in rats. Brain Struct Funct. doi:10.鈥?007/鈥媠00429-014-0868-8 PubMed
    Floresco SB, Ghods-Sharifi S (2007) Amygdala-prefrontal cortical circuitry regulates effort-based decision making. Cereb Cortex 17:251鈥?60. doi:10.鈥?093/鈥媍ercor/鈥媌hj143 CrossRef PubMed
    Floresco SB, Magyar O (2006) Mesocortical dopamine modulation of executive functions: beyond working memory. Psychopharmacology (Berl) 188:567鈥?85. doi:10.鈥?007/鈥媠00213-006-0404-5 CrossRef
    Goudriaan AE, Oosterlaan J, de Beurs E, van den Brink W (2005) Decision making in pathological gambling: a comparison between pathological gamblers, alcohol dependents, persons with Tourette syndrome, and normal controls. Brain Res Cogn Brain Res 23:137鈥?51. doi:10.鈥?016/鈥媕.鈥媍ogbrainres.鈥?005.鈥?1.鈥?17 CrossRef PubMed
    Hewig J, Straube T, Trippe RH et al (2009) Decision-making under risk: an fMRI study. J Cogn Neurosci 21:1642鈥?652. doi:10.鈥?162/鈥媕ocn.鈥?009.鈥?1112 CrossRef PubMed
    Hillman KL, Bilkey DK (2010) Neurons in the rat anterior cingulate cortex dynamically encode cost-benefit in a spatial decision-making task. J Neurosci 30:7705鈥?713. doi:10.鈥?523/鈥婮NEUROSCI.鈥?273-10.鈥?010 CrossRef PubMed
    Holec V, Pirot HL, Euston DR (2014) Not all effort is equal: the role of the anterior cingulate cortex in different forms of effort-reward decisions. Front Behav Neurosci 8:12. doi:10.鈥?389/鈥媐nbeh.鈥?014.鈥?0012 PubMedCentral CrossRef PubMed
    Hoover WB, Vertes RP (2007) Anatomical analysis of afferent projections to the medial prefrontal cortex in the rat. Brain Struct Funct 212:149鈥?79. doi:10.鈥?007/鈥媠00429-007-0150-4 CrossRef PubMed
    Lapish CC, Durstewitz D, Chandler LJ, Seamans JK (2008) Successful choice behavior is associated with distinct and coherent network states in anterior cingulate cortex. Proc Natl Acad Sci U S A 105:11963鈥?1968. doi:10.鈥?073/鈥媝nas.鈥?804045105 PubMedCentral CrossRef PubMed
    Lawrence NS, Jollant F, O鈥橠aly O et al (2009) Distinct roles of prefrontal cortical subregions in the Iowa Gambling Task. Cereb Cortex 19:1134鈥?143. doi:10.鈥?093/鈥媍ercor/鈥媌hn154 CrossRef PubMed
    Li X, Lu Z-L, D鈥橝rgembeau A et al (2010) The Iowa Gambling Task in fMRI images. Hum Brain Mapp 31:410鈥?23. doi:10.鈥?002/鈥媓bm.鈥?0875 PubMedCentral PubMed
    Manes F, Sahakian B, Clark L et al (2002) Decision-making processes following damage to the prefrontal cortex. Brain 125:624鈥?39CrossRef PubMed
    McDonald J (2009) Handbook of biological statistics, 2nd edn. Sparky House Publishing, Baltimore
    Muir JL, Everitt BJ, Robbins TW (1996) The cerebral cortex of the rat and visual attentional function: dissociable effects of mediofrontal, cingulate, anterior dorsolateral, and parietal cortex lesions on a fivechoice serial reaction time task. Cerebral Cortex 6(3):470鈥?81
    Murphy ER, Fernando AB, Urcelay GP, Robinson ES, Mar AC, Theobald DE, Dalley JW, Robbins TW (2012) Impulsive behaviour induced by both NMDA receptor antagonism and GABAA receptor activation in rat ventromedial prefrontal cortex. Psychopharmacology (Berl). 219(2):401鈥?10
    Naccache L, Dehaene S, Cohen L et al (2005) Effortless control: executive attention and conscious feeling of mental effort are dissociable. Neuropsychologia 43:1318鈥?328. doi:10.鈥?016/鈥媕.鈥媙europsychologia鈥?鈥?004.鈥?1.鈥?24 CrossRef PubMed
    Njomboro P, Deb S, Humphreys GW (2012) Apathy and executive functions: insights from brain damage involving the anterior cingulate cortex. BMJ Case Rep. doi:10.鈥?136/鈥媌cr-02-2012-5934 PubMedCentral PubMed
    Paine TA, Asinof SK, Diehl GW et al (2013) Medial prefrontal cortex lesions impair decision-making on a rodent gambling task: reversal by D1 receptor antagonist administration. Behav Brain Res 243:247鈥?54. doi:10.鈥?016/鈥媕.鈥媌br.鈥?013.鈥?1.鈥?18 PubMedCentral CrossRef PubMed
    Paine TA, O鈥橦ara A, Plaut B, Lowes DC (2014) Effects of disrupting medial prefrontal cortex GABA transmission on decision-making in a rodent gambling task. Psychopharmacology (Berl). doi:10.鈥?007/鈥媠00213-014-3816-7
    Pattij T, Vanderschuren LJMJ (2008) The neuropharmacology of impulsive behaviour. Trends Pharmacol Sci 29:192鈥?99. doi:10.鈥?016/鈥媕.鈥媡ips.鈥?008.鈥?1.鈥?02 CrossRef PubMed
    Paxinos G, Watson C (1998) The rat brain in stereotaxic co-ordinates. Academic, Sydney
    Ragozzino ME (2007) The contribution of the medial prefrontal cortex, orbitofrontal cortex, and dorsomedial striatum to behavioral flexibility. Ann N Y Acad Sci 1121:355鈥?75. doi:10.鈥?196/鈥媋nnals.鈥?401.鈥?13 CrossRef PubMed
    Rivalan M, Coutureau E, Fitoussi A, Dellu-Hagedorn F (2011) Inter-individual decision-making differences in the effects of cingulate, orbitofrontal, and prelimbic cortex lesions in a rat gambling task. Front Behav Neurosci 5:22. doi:10.鈥?389/鈥媐nbeh.鈥?011.鈥?0022 PubMedCentral CrossRef PubMed
    Robbins TW (2002) The 5-choice serial reaction time task: behavioural pharmacology and functional neurochemistry. Psychopharmacology (Berl) 163:362鈥?80. doi:10.鈥?007/鈥媠00213-002-1154-7 CrossRef
    Rogers RD, Owen AM, Middleton HC et al (1999) Choosing between small, likely rewards and large, unlikely rewards activates inferior and orbital prefrontal cortex. J Neurosci 19:9029鈥?038PubMed
    Rogers RD, Ramnani N, Mackay C et al (2004) Distinct portions of anterior cingulate cortex and medial prefrontal cortex are activated by reward processing in separable phases of decision-making cognition. Biol Psychiatry 55:594鈥?02. doi:10.鈥?016/鈥媕.鈥媌iopsych.鈥?003.鈥?1.鈥?12 CrossRef PubMed
    Rudebeck PH, Walton ME, Smyth AN et al (2006) Separate neural pathways process different decision costs. Nat Neurosci 9:1161鈥?168. doi:10.鈥?038/鈥媙n1756 CrossRef PubMed
    Schweimer J, Hauber W (2005) Involvement of the rat anterior cingulate cortex in control of instrumental responses guided by reward expectancy. Learn Mem 12:334鈥?42. doi:10.鈥?101/鈥媗m.鈥?0605 PubMedCentral CrossRef PubMed
    Seamans JK, Yang CR (2004) The principal features and mechanisms of dopamine modulation in the prefrontal cortex. Prog Neurobiol 74:1鈥?8. doi:10.鈥?016/鈥媕.鈥媝neurobio.鈥?004.鈥?5.鈥?06 CrossRef PubMed
    Seamans JK, Gorelova N, Durstewitz D, Yang CR (2001) Bidirectional dopamine modulation of GABAergic inhibition in prefrontal cortical pyramidal neurons. J Neurosci 21:3628鈥?638PubMed
    Seamans JK, Lapish CC, Durstewitz D (2008) Comparing the prefrontal cortex of rats and primates: insights from electrophysiology. Neurotox Res 14:249鈥?62. doi:10.鈥?007/鈥婤F03033814 CrossRef PubMed
    Shurman B, Horan WP, Nuechterlein KH (2005) Schizophrenia patients demonstrate a distinctive pattern of decision-making impairment on the Iowa Gambling Task. Schizophr Res 72:215鈥?24. doi:10.鈥?016/鈥媕.鈥媠chres.鈥?004.鈥?3.鈥?20 CrossRef PubMed
    Smoski MJ, Lynch TR, Rosenthal MZ et al (2008) Decision-making and risk aversion among depressive adults. J Behav Ther Exp Psychiatry 39:567鈥?76. doi:10.鈥?016/鈥媕.鈥媕btep.鈥?008.鈥?1.鈥?04 PubMedCentral CrossRef PubMed
    St Onge JR, Floresco SB (2009) Dopaminergic modulation of risk-based decision making. Neuropsychopharmacology 34:681鈥?97. doi:10.鈥?038/鈥媙pp.鈥?008.鈥?21 CrossRef PubMed
    St Onge JR, Floresco SB (2010) Prefrontal cortical contribution to risk-based decision making. Cereb Cortex 20:1816鈥?828. doi:10.鈥?093/鈥媍ercor/鈥媌hp250 CrossRef PubMed
    Trantham-Davidson H, Neely LC, Lavin A, Seamans JK (2004) Mechanisms underlying differential D1 versus D2 dopamine receptor regulation of inhibition in prefrontal cortex. J Neurosci 24:10652鈥?0659. doi:10.鈥?523/鈥婮NEUROSCI.鈥?179-04.鈥?004 CrossRef PubMed
    Tsutsui-Kimura I, Yoshida T, Ohmura Y, Izumi T, Yoshioka M (2014) Milnacipran remediates impulsive deficits in rats with lesions of the ventromedial prefrontal cortex. Int J Neuropsychopharmacol 8(5). doi:10.鈥?093/鈥媔jnp/鈥媝yu083
    Uylings HBM, Groenewegen HJ, Kolb B (2003) Do rats have a prefrontal cortex? Behav Brain Res 146:3鈥?7CrossRef PubMed
    Veeneman MMJ, Broekhoven MH, Damsteegt R, Vanderschuren LJMJ (2012) Distinct contributions of dopamine in the dorsolateral striatum and nucleus accumbens shell to the reinforcing properties of cocaine. Neuropsychopharmacology 37:487鈥?98. doi:10.鈥?038/鈥媙pp.鈥?011.鈥?09 PubMedCentral CrossRef PubMed
    Vertes RP (2004) Differential projections of the infralimbic and prelimbic cortex in the rat. Synapse 51:32鈥?8. doi:10.鈥?002/鈥媠yn.鈥?0279 CrossRef PubMed
    Walton ME, Bannerman DM, Alterescu K, Rushworth MFS (2003) Functional specialization within medial frontal cortex of the anterior cingulate for evaluating effort-related decisions. J Neurosci 23:6475鈥?479PubMed
    Walton ME, Groves J, Jennings KA et al (2009) Comparing the role of the anterior cingulate cortex and 6-hydroxydopamine nucleus accumbens lesions on operant effort-based decision making. Eur J Neurosci 29:1678鈥?691. doi:10.鈥?111/鈥媕.鈥?460-9568.鈥?009.鈥?6726.鈥媥 PubMedCentral CrossRef PubMed
    Windmann S, Kirsch P, Mier D et al (2006) On framing effects in decision making: linking lateral versus medial orbitofrontal cortex activation to choice outcome processing. J Cogn Neurosci 18:1198鈥?211. doi:10.鈥?162/鈥媕ocn.鈥?006.鈥?8.鈥?.鈥?198 CrossRef PubMed
    Zeeb FD, Winstanley CA (2011) Lesions of the basolateral amygdala and orbitofrontal cortex differentially affect acquisition and performance of a rodent gambling task. J Neurosci 31(6):2197鈥?204. doi:10.鈥?523/鈥婮NEUROSCI.鈥?597-10.鈥?011
    Zeeb FD, Winstanley CA (2013) Functional disconnection of the orbitofrontal cortex and basolateral amygdala impairs acquisition of a rat gambling task and disrupts animals鈥?ability to alter decision-making behavior after reinforcer devaluation. J Neurosci 33:6434鈥?443. doi:10.鈥?523/鈥婮NEUROSCI.鈥?971-12.鈥?013 CrossRef PubMed
    Zeeb FD, Robbins TW, Winstanley CA (2009) Serotonergic and dopaminergic modulation of gambling behavior as assessed using a novel rat gambling task. Neuropsychopharmacology 34:2329鈥?343. doi:10.鈥?038/鈥媙pp.鈥?009.鈥?2 CrossRef PubMed
    Zeeb FD, Floresco SB, Winstanley CA (2010) Contributions of the orbitofrontal cortex to impulsive choice: interactions with basal levels of impulsivity, dopamine signalling, and reward-related cues. Psychopharmacology (Berl) 211(1):87鈥?8. doi:10.鈥?007/鈥媠00213-010-1871-2 CrossRef
    Zeeb FD, Wong AC, Winstanley CA (2013) Differential effects of environmental enrichment, social-housing, and isolation-rearing on a rat gambling task: dissociations between impulsive action and risky decision-making. Psychopharmacology (Berl) 225:381鈥?95. doi:10.鈥?007/鈥媠00213-012-2822-x CrossRef
  • 作者单位:Fiona D. Zeeb (1) (4)
    P. J. J. Baarendse (2)
    L. J. M. J. Vanderschuren (2) (3)
    Catharine A. Winstanley (1)

    1. Department of Psychology, University of British Columbia, 2215 Wesbrook Mall, Vancouver, BC, V6T 1Z3, Canada
    4. Centre for Addiction and Mental Health, Section of Biopsychology, Campbell Family Mental Health Research Institute, Toronto, ON, Canada
    2. Department of Translational Neuroscience, Brain Center Rudolf Magnus, University Medical Center Utrecht, Utrecht, The Netherlands
    3. Department of Animals in Science and Society, Division of Behavioural Neuroscience, Faculty of Veterinary Medicine, Utrecht University, Utrecht, The Netherlands
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Biomedicine
    Pharmacology and Toxicology
    Psychiatry
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1432-2072
文摘
Rationale Studies employing the Iowa Gambling Task (IGT) demonstrated that areas of the frontal cortex, including the ventromedial prefrontal cortex, orbitofrontal cortex (OFC), dorsolateral prefrontal cortex, and anterior cingulate cortex (ACC), are involved in the decision-making process. However, the precise role of these regions in maintaining optimal choice is not clear.
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