The role of medial prefrontal cortex in memory and decision making

Some have claimed that the medial prefrontal cortex (mPFC) mediates decision making. Others suggest mPFC is selectively involved in the retrieval of remote long-term memory. Yet others suggests mPFC supports memory and consolidation on time scales ranging from seconds to days. How can all these role...

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Published in:Neuron (Cambridge, Mass.) Vol. 76; no. 6; p. 1057
Main Authors: Euston, David R, Gruber, Aaron J, McNaughton, Bruce L
Format: Journal Article
Language:English
Published: United States 20.12.2012
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ISSN:1097-4199, 1097-4199
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Abstract Some have claimed that the medial prefrontal cortex (mPFC) mediates decision making. Others suggest mPFC is selectively involved in the retrieval of remote long-term memory. Yet others suggests mPFC supports memory and consolidation on time scales ranging from seconds to days. How can all these roles be reconciled? We propose that the function of the mPFC is to learn associations between context, locations, events, and corresponding adaptive responses, particularly emotional responses. Thus, the ubiquitous involvement of mPFC in both memory and decision making may be due to the fact that almost all such tasks entail the ability to recall the best action or emotional response to specific events in a particular place and time. An interaction between multiple memory systems may explain the changing importance of mPFC to different types of memories over time. In particular, mPFC likely relies on the hippocampus to support rapid learning and memory consolidation.
AbstractList Some have claimed that the medial prefrontal cortex (mPFC) mediates decision making. Others suggest mPFC is selectively involved in the retrieval of remote long-term memory. Yet others suggests mPFC supports memory and consolidation on time scales ranging from seconds to days. How can all these roles be reconciled? We propose that the function of the mPFC is to learn associations between context, locations, events, and corresponding adaptive responses, particularly emotional responses. Thus, the ubiquitous involvement of mPFC in both memory and decision making may be due to the fact that almost all such tasks entail the ability to recall the best action or emotional response to specific events in a particular place and time. An interaction between multiple memory systems may explain the changing importance of mPFC to different types of memories over time. In particular, mPFC likely relies on the hippocampus to support rapid learning and memory consolidation.
Some have claimed that the medial prefrontal cortex (mPFC) mediates decision making. Others suggest mPFC is selectively involved in the retrieval of remote long-term memory. Yet others suggests mPFC supports memory and consolidation on time scales ranging from seconds to days. How can all these roles be reconciled? We propose that the function of the mPFC is to learn associations between context, locations, events, and corresponding adaptive responses, particularly emotional responses. Thus, the ubiquitous involvement of mPFC in both memory and decision making may be due to the fact that almost all such tasks entail the ability to recall the best action or emotional response to specific events in a particular place and time. An interaction between multiple memory systems may explain the changing importance of mPFC to different types of memories over time. In particular, mPFC likely relies on the hippocampus to support rapid learning and memory consolidation.Some have claimed that the medial prefrontal cortex (mPFC) mediates decision making. Others suggest mPFC is selectively involved in the retrieval of remote long-term memory. Yet others suggests mPFC supports memory and consolidation on time scales ranging from seconds to days. How can all these roles be reconciled? We propose that the function of the mPFC is to learn associations between context, locations, events, and corresponding adaptive responses, particularly emotional responses. Thus, the ubiquitous involvement of mPFC in both memory and decision making may be due to the fact that almost all such tasks entail the ability to recall the best action or emotional response to specific events in a particular place and time. An interaction between multiple memory systems may explain the changing importance of mPFC to different types of memories over time. In particular, mPFC likely relies on the hippocampus to support rapid learning and memory consolidation.
Author Euston, David R
McNaughton, Bruce L
Gruber, Aaron J
Author_xml – sequence: 1
  givenname: David R
  surname: Euston
  fullname: Euston, David R
  email: david.euston@gmail.com
  organization: Department of Neuroscience, University of Lethbridge, Lethbridge, AB T1K 3M4, Canada. david.euston@gmail.com
– sequence: 2
  givenname: Aaron J
  surname: Gruber
  fullname: Gruber, Aaron J
– sequence: 3
  givenname: Bruce L
  surname: McNaughton
  fullname: McNaughton, Bruce L
BackLink https://www.ncbi.nlm.nih.gov/pubmed/23259943$$D View this record in MEDLINE/PubMed
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References 18562331 - Cereb Cortex. 2009 Feb;19(2):474-82
12843246 - J Neurosci. 2003 Jul 2;23(13):5472-6
16207931 - Cereb Cortex. 2006 Jul;16(7):1040-55
19004013 - Hippocampus. 2009 May;19(5):446-55
21330548 - Science. 2011 Feb 18;331(6019):924-8
18441286 - Learn Mem. 2008 May;15(5):290-3
17292803 - Brain Res Bull. 2007 Mar 30;71(6):601-9
21982376 - Neuron. 2011 Oct 6;72(1):153-65
15987936 - J Neurosci. 2005 Jun 29;25(26):6066-75
14586019 - J Neurosci. 2003 Oct 29;23(30):9897-905
20430044 - Neuropsychologia. 2010 Jul;48(8):2339-56
19553460 - J Neurosci. 2009 Jun 24;29(25):8206-14
11283309 - Annu Rev Neurosci. 2001;24:167-202
19483687 - Nat Neurosci. 2009 Jul;12(7):919-26
17559940 - Brain Res Rev. 2007 Nov;56(1):1-26
9030646 - J Neurosci. 1997 Mar 1;17(5):1880-90
18441294 - Learn Mem. 2008 May;15(5):368-72
11416168 - Proc Natl Acad Sci U S A. 2001 Jul 3;98(14):8077-82
19688032 - PLoS Biol. 2009 Aug;7(8):e1000173
17475789 - J Neurosci. 2007 May 2;27(18):4819-25
16421330 - Cereb Cortex. 2006 Dec;16(12):1759-65
16672659 - J Neurosci. 2006 May 3;26(18):4852-9
18599792 - Science. 2008 Jul 4;321(5885):140-3
15820700 - Neuron. 2005 Apr 7;46(1):141-51
18463175 - Learn Mem. 2008 May;15(5):357-67
21350486 - Nature. 2011 Feb 24;470(7335):535-9
19073430 - Neurotox Res. 2008 Oct;14(2-3):249-62
17369358 - Proc Natl Acad Sci U S A. 2007 Mar 27;104(13):5632-7
15094484 - Neuroreport. 2004 Mar 22;15(4):721-6
17585306 - Nat Rev Neurosci. 2007 Jul;8(7):536-46
8891652 - Exp Brain Res. 1996 Sep;111(2):215-32
10727644 - Brain Res. 2000 Mar 31;860(1-2):199-202
19682591 - Neurobiol Learn Mem. 2010 Jan;93(1):37-45
21639603 - Behav Neurosci. 2011 Jun;125(3):327-43
19380710 - Learn Mem. 2009 May;16(5):279-88
16279838 - PLoS Biol. 2005 Dec;3(12):e402
12242447 - Science. 2002 Sep 20;297(5589):2070-3
14599436 - Neurosci Biobehav Rev. 2003 Oct;27(6):555-79
16325347 - Neuroscience. 2006 Apr 28;139(1):291-7
21315825 - Neurobiol Learn Mem. 2011 May;95(4):425-32
21944154 - Pain. 2011 Dec;152(12):2746-56
9722087 - Cereb Cortex. 1998 Jul-Aug;8(5):437-50
7624455 - Psychol Rev. 1995 Jul;102(3):419-57
1719041 - J Comp Neurol. 1991 Sep 1;311(1):1-16
19494143 - J Neurosci. 2009 Jun 3;29(22):7208-19
17934187 - Cereb Cortex. 2008 Jun;18(6):1407-14
16713111 - Neuroscience. 2006 Aug 25;141(2):585-96
18006749 - Science. 2007 Nov 16;318(5853):1147-50
15556023 - Trends Cogn Sci. 2004 Dec;8(12):539-46
12040201 - Science. 2002 May 31;296(5573):1709-11
19103227 - Behav Brain Res. 2009 May 16;199(2):222-34
7996180 - J Neurosci. 1994 Dec;14(12):7347-56
21593332 - J Neurosci. 2011 May 18;31(20):7486-91
16120777 - J Neurosci. 2005 Aug 24;25(34):7763-70
15893820 - Neurosci Biobehav Rev. 2005;29(4-5):829-41
9856467 - Neuron. 1998 Nov;21(5):1123-8
17045348 - Behav Brain Res. 2006 Dec 15;175(2):329-36
18988855 - Science. 2008 Nov 7;322(5903):960-3
16500029 - Neuroscience. 2006;139(3):865-76
15254217 - Learn Mem. 2004 Jul-Aug;11(4):453-8
18066533 - Psychopharmacology (Berl). 2008 Apr;197(2):319-26
2288669 - Behav Brain Res. 1990 Dec 14;41(2):95-102
17848501 - Learn Mem. 2007 Sep;14(9):616-24
22323629 - J Neurophysiol. 2012 May;107(9):2393-407
9700566 - J Comp Neurol. 1998 Aug 24;398(2):179-205
17223581 - Neurobiol Learn Mem. 2007 May;87(4):659-68
20109531 - Neuroscience. 2010 Apr 14;166(4):1023-35
12041532 - Science. 2002 May 31;296(5573):1610-1 author reply 1610-1
22421138 - Proc Natl Acad Sci U S A. 2012 Mar 27;109(13):5086-91
11488395 - Neuroscientist. 2001 Aug;7(4):293-302
10377372 - J Neurosci. 1999 Jul 1;19(13):5666-73
12576550 - Proc Natl Acad Sci U S A. 2003 Feb 18;100(4):2065-9
18516033 - Nat Neurosci. 2008 Jul;11(7):823-33
22496747 - PLoS One. 2012;7(4):e33302
23961750 - J Cogn Neurosci. 1995 Winter;7(1):1-24
11516821 - Neuroscience. 2001;105(3):535-45
20471356 - Neuron. 2010 May 13;66(3):438-48
14643455 - Behav Brain Res. 2003 Nov 30;146(1-2):3-17
8748957 - Behav Neurosci. 1995 Dec;109(6):1063-73
18708525 - Proc Natl Acad Sci U S A. 2008 Aug 19;105(33):11963-8
18000060 - Proc Natl Acad Sci U S A. 2007 Nov 20;104(47):18778-83
17182765 - J Neurosci. 2006 Dec 20;26(51):13143-55
15232109 - Science. 2004 Jul 2;305(5680):96-9
19249278 - Neuron. 2009 Feb 26;61(4):587-96
18835649 - Trends Neurosci. 2008 Dec;31(12):599-608
16322362 - Learn Mem. 2005 Nov-Dec;12(6):606-14
21244716 - Mol Brain. 2011;4:4
9399369 - Psychopharmacology (Berl). 1997 Nov;134(1):73-82
17145507 - Neuron. 2006 Dec 7;52(5):871-82
18565549 - Neuropharmacology. 2009;56 Suppl 1:177-85
9079781 - Behav Brain Res. 1997 Mar;84(1-2):151-9
17717690 - Brain Struct Funct. 2007 Sep;212(2):149-79
15685217 - Nat Rev Neurosci. 2005 Feb;6(2):119-30
11252769 - Nat Rev Neurosci. 2000 Oct;1(1):59-65
12079756 - Trends Neurosci. 2002 Jul;25(7):340-3
15729742 - Synapse. 2005 May;56(2):74-83
17389302 - Neurology. 2007 Mar 27;68(13):991-5
15576887 - Learn Mem. 2004 Nov-Dec;11(6):697-704
20559337 - Nat Rev Neurosci. 2010 Jul;11(7):503-13
1783682 - J Comp Neurol. 1991 Nov 22;313(4):574-86
16462609 - Neuroreport. 2006 Feb 27;17(3):341-4
21159980 - J Neurosci. 2010 Dec 15;30(50):17102-10
17111412 - Hippocampus. 2007;17(2):93-7
17982449 - Nat Neurosci. 2007 Dec;10(12):1625-33
12431746 - Brain Res Bull. 2002 Nov 30;59(3):163-80
16196030 - J Comp Neurol. 2005 Nov 14;492(2):145-77
16166399 - Learn Mem. 2005 Sep-Oct;12(5):445-6
8036517 - Science. 1994 Jul 29;265(5172):676-9
14527442 - Neuron. 2003 Sep 25;40(1):177-88
11313296 - Cereb Cortex. 2001 May;11(5):441-51
15131309 - Science. 2004 May 7;304(5672):881-3
17173043 - Nat Neurosci. 2007 Jan;10(1):100-7
19144840 - J Neurosci. 2009 Jan 14;29(2):402-13
16855083 - J Neurosci. 2006 Jul 19;26(29):7555-64
21147169 - Behav Brain Res. 2011 Apr 15;218(2):325-34
11105653 - Prog Brain Res. 2000;126:287-301
16040709 - Science. 2005 Jul 22;309(5734):619-23
10571477 - Behav Neurosci. 1999 Oct;113(5):941-55
18614383 - Neurobiol Learn Mem. 2008 Sep;90(2):365-73
21689594 - Neuron. 2011 Jun 23;70(6):1054-69
10234037 - J Neurosci. 1999 May 15;19(10):4090-101
14960599 - J Neurosci. 2004 Feb 11;24(6):1288-95
19074016 - J Neurosci. 2008 Dec 10;28(50):13428-34
8351520 - Science. 1993 Aug 20;261(5124):1055-8
14681935 - J Comp Neurol. 2004 Jan 12;468(3):425-40
20431726 - Front Integr Neurosci. 2010 Mar 10;4:2
10838597 - Trends Neurosci. 2000 Jun;23(6):271-6
16407110 - Proc Natl Acad Sci U S A. 2006 Jan 17;103(3):756-61
10458162 - Nature. 1999 Aug 12;400(6745):671-5
15486290 - Science. 2004 Oct 15;306(5695):443-7
19906977 - J Neurosci. 2009 Nov 11;29(45):14299-308
20074655 - Neurobiol Learn Mem. 2010 Mar;93(3):415-21
9108217 - Exp Brain Res. 1997 Mar;113(3):509-19
21331082 - Nat Rev Neurosci. 2011 Mar;12(3):154-67
14716015 - Science. 2004 Jan 9;303(5655):232-5
20508034 - Learn Mem. 2010 Jun;17(6):297-305
22016538 - J Neurosci. 2011 Oct 19;31(42):15048-52
17145511 - Neuron. 2006 Dec 7;52(5):921-31
10341256 - J Neurosci. 1999 Jun 1;19(11):4585-94
16015622 - Hippocampus. 2005;15(6):739-49
22876225 - Front Behav Neurosci. 2012 Aug 03;6:50
19665526 - Neuroscience. 2009 Dec 1;164(2):444-56
15893643 - Neuroscience. 2005;133(1):193-207
18480374 - J Neurophysiol. 2008 Jul;100(1):520-5
16325345 - Neuroscience. 2006 Apr 28;139(1):251-61
20164349 - J Neurosci. 2010 Feb 17;30(7):2650-61
17251424 - J Neurosci. 2007 Jan 24;27(4):840-4
21889806 - Trends Neurosci. 2011 Oct;34(10):548-59
17507507 - J Neurophysiol. 2007 Jul;98(1):303-16
20471357 - Neuron. 2010 May 13;66(3):449-60
16611848 - J Neurophysiol. 2006 Jul;96(1):62-70
20620877 - Neuron. 2010 Jun 24;66(6):921-36
18215627 - Neuron. 2008 Jan 24;57(2):314-25
16157280 - Neuron. 2005 Sep 15;47(6):859-72
21926982 - Nat Neurosci. 2011 Oct;14(10):1338-44
10818167 - J Neurosci. 2000 Jun 1;20(11):4320-4
18189012 - Cogn Affect Behav Neurosci. 2007 Dec;7(4):391-5
11399329 - Behav Brain Res. 2001 Sep 14;123(2):165-83
16420154 - Behav Neurosci. 2005 Dec;119(6):1496-510
20210846 - J Neuroendocrinol. 2010 May;22(5):355-61
20332188 - Learn Mem. 2010 Apr;17(4):168-75
21800317 - J Comp Neurol. 2011 Dec 15;519(18):3766-801
16687496 - J Neurosci. 2006 May 10;26(19):5049-58
References_xml – reference: 19074016 - J Neurosci. 2008 Dec 10;28(50):13428-34
– reference: 18189012 - Cogn Affect Behav Neurosci. 2007 Dec;7(4):391-5
– reference: 17507507 - J Neurophysiol. 2007 Jul;98(1):303-16
– reference: 14643455 - Behav Brain Res. 2003 Nov 30;146(1-2):3-17
– reference: 16325347 - Neuroscience. 2006 Apr 28;139(1):291-7
– reference: 16015622 - Hippocampus. 2005;15(6):739-49
– reference: 16855083 - J Neurosci. 2006 Jul 19;26(29):7555-64
– reference: 15576887 - Learn Mem. 2004 Nov-Dec;11(6):697-704
– reference: 19249278 - Neuron. 2009 Feb 26;61(4):587-96
– reference: 11283309 - Annu Rev Neurosci. 2001;24:167-202
– reference: 17559940 - Brain Res Rev. 2007 Nov;56(1):1-26
– reference: 1719041 - J Comp Neurol. 1991 Sep 1;311(1):1-16
– reference: 21982376 - Neuron. 2011 Oct 6;72(1):153-65
– reference: 18835649 - Trends Neurosci. 2008 Dec;31(12):599-608
– reference: 15893820 - Neurosci Biobehav Rev. 2005;29(4-5):829-41
– reference: 21593332 - J Neurosci. 2011 May 18;31(20):7486-91
– reference: 9030646 - J Neurosci. 1997 Mar 1;17(5):1880-90
– reference: 19665526 - Neuroscience. 2009 Dec 1;164(2):444-56
– reference: 11313296 - Cereb Cortex. 2001 May;11(5):441-51
– reference: 21244716 - Mol Brain. 2011;4:4
– reference: 15254217 - Learn Mem. 2004 Jul-Aug;11(4):453-8
– reference: 10458162 - Nature. 1999 Aug 12;400(6745):671-5
– reference: 19906977 - J Neurosci. 2009 Nov 11;29(45):14299-308
– reference: 19380710 - Learn Mem. 2009 May;16(5):279-88
– reference: 15131309 - Science. 2004 May 7;304(5672):881-3
– reference: 16325345 - Neuroscience. 2006 Apr 28;139(1):251-61
– reference: 11416168 - Proc Natl Acad Sci U S A. 2001 Jul 3;98(14):8077-82
– reference: 21147169 - Behav Brain Res. 2011 Apr 15;218(2):325-34
– reference: 17982449 - Nat Neurosci. 2007 Dec;10(12):1625-33
– reference: 9856467 - Neuron. 1998 Nov;21(5):1123-8
– reference: 20471356 - Neuron. 2010 May 13;66(3):438-48
– reference: 10727644 - Brain Res. 2000 Mar 31;860(1-2):199-202
– reference: 16166399 - Learn Mem. 2005 Sep-Oct;12(5):445-6
– reference: 17292803 - Brain Res Bull. 2007 Mar 30;71(6):601-9
– reference: 21926982 - Nat Neurosci. 2011 Oct;14(10):1338-44
– reference: 16500029 - Neuroscience. 2006;139(3):865-76
– reference: 15094484 - Neuroreport. 2004 Mar 22;15(4):721-6
– reference: 18614383 - Neurobiol Learn Mem. 2008 Sep;90(2):365-73
– reference: 9722087 - Cereb Cortex. 1998 Jul-Aug;8(5):437-50
– reference: 17111412 - Hippocampus. 2007;17(2):93-7
– reference: 14716015 - Science. 2004 Jan 9;303(5655):232-5
– reference: 17389302 - Neurology. 2007 Mar 27;68(13):991-5
– reference: 9108217 - Exp Brain Res. 1997 Mar;113(3):509-19
– reference: 21689594 - Neuron. 2011 Jun 23;70(6):1054-69
– reference: 14681935 - J Comp Neurol. 2004 Jan 12;468(3):425-40
– reference: 20332188 - Learn Mem. 2010 Apr;17(4):168-75
– reference: 20431726 - Front Integr Neurosci. 2010 Mar 10;4:2
– reference: 9700566 - J Comp Neurol. 1998 Aug 24;398(2):179-205
– reference: 16611848 - J Neurophysiol. 2006 Jul;96(1):62-70
– reference: 17145507 - Neuron. 2006 Dec 7;52(5):871-82
– reference: 16713111 - Neuroscience. 2006 Aug 25;141(2):585-96
– reference: 1783682 - J Comp Neurol. 1991 Nov 22;313(4):574-86
– reference: 23961750 - J Cogn Neurosci. 1995 Winter;7(1):1-24
– reference: 18562331 - Cereb Cortex. 2009 Feb;19(2):474-82
– reference: 17475789 - J Neurosci. 2007 May 2;27(18):4819-25
– reference: 17182765 - J Neurosci. 2006 Dec 20;26(51):13143-55
– reference: 20164349 - J Neurosci. 2010 Feb 17;30(7):2650-61
– reference: 10838597 - Trends Neurosci. 2000 Jun;23(6):271-6
– reference: 14527442 - Neuron. 2003 Sep 25;40(1):177-88
– reference: 16040709 - Science. 2005 Jul 22;309(5734):619-23
– reference: 18988855 - Science. 2008 Nov 7;322(5903):960-3
– reference: 19553460 - J Neurosci. 2009 Jun 24;29(25):8206-14
– reference: 20074655 - Neurobiol Learn Mem. 2010 Mar;93(3):415-21
– reference: 11399329 - Behav Brain Res. 2001 Sep 14;123(2):165-83
– reference: 16322362 - Learn Mem. 2005 Nov-Dec;12(6):606-14
– reference: 22323629 - J Neurophysiol. 2012 May;107(9):2393-407
– reference: 16672659 - J Neurosci. 2006 May 3;26(18):4852-9
– reference: 15486290 - Science. 2004 Oct 15;306(5695):443-7
– reference: 18516033 - Nat Neurosci. 2008 Jul;11(7):823-33
– reference: 11252769 - Nat Rev Neurosci. 2000 Oct;1(1):59-65
– reference: 2288669 - Behav Brain Res. 1990 Dec 14;41(2):95-102
– reference: 21889806 - Trends Neurosci. 2011 Oct;34(10):548-59
– reference: 21330548 - Science. 2011 Feb 18;331(6019):924-8
– reference: 17045348 - Behav Brain Res. 2006 Dec 15;175(2):329-36
– reference: 19004013 - Hippocampus. 2009 May;19(5):446-55
– reference: 10571477 - Behav Neurosci. 1999 Oct;113(5):941-55
– reference: 17223581 - Neurobiol Learn Mem. 2007 May;87(4):659-68
– reference: 19144840 - J Neurosci. 2009 Jan 14;29(2):402-13
– reference: 22016538 - J Neurosci. 2011 Oct 19;31(42):15048-52
– reference: 11516821 - Neuroscience. 2001;105(3):535-45
– reference: 17848501 - Learn Mem. 2007 Sep;14(9):616-24
– reference: 16462609 - Neuroreport. 2006 Feb 27;17(3):341-4
– reference: 12576550 - Proc Natl Acad Sci U S A. 2003 Feb 18;100(4):2065-9
– reference: 16207931 - Cereb Cortex. 2006 Jul;16(7):1040-55
– reference: 7624455 - Psychol Rev. 1995 Jul;102(3):419-57
– reference: 16196030 - J Comp Neurol. 2005 Nov 14;492(2):145-77
– reference: 18000060 - Proc Natl Acad Sci U S A. 2007 Nov 20;104(47):18778-83
– reference: 16120777 - J Neurosci. 2005 Aug 24;25(34):7763-70
– reference: 19103227 - Behav Brain Res. 2009 May 16;199(2):222-34
– reference: 16687496 - J Neurosci. 2006 May 10;26(19):5049-58
– reference: 9079781 - Behav Brain Res. 1997 Mar;84(1-2):151-9
– reference: 17369358 - Proc Natl Acad Sci U S A. 2007 Mar 27;104(13):5632-7
– reference: 20471357 - Neuron. 2010 May 13;66(3):449-60
– reference: 10818167 - J Neurosci. 2000 Jun 1;20(11):4320-4
– reference: 8748957 - Behav Neurosci. 1995 Dec;109(6):1063-73
– reference: 21315825 - Neurobiol Learn Mem. 2011 May;95(4):425-32
– reference: 16420154 - Behav Neurosci. 2005 Dec;119(6):1496-510
– reference: 21639603 - Behav Neurosci. 2011 Jun;125(3):327-43
– reference: 19688032 - PLoS Biol. 2009 Aug;7(8):e1000173
– reference: 9399369 - Psychopharmacology (Berl). 1997 Nov;134(1):73-82
– reference: 21331082 - Nat Rev Neurosci. 2011 Mar;12(3):154-67
– reference: 18006749 - Science. 2007 Nov 16;318(5853):1147-50
– reference: 16279838 - PLoS Biol. 2005 Dec;3(12):e402
– reference: 18441294 - Learn Mem. 2008 May;15(5):368-72
– reference: 15685217 - Nat Rev Neurosci. 2005 Feb;6(2):119-30
– reference: 8351520 - Science. 1993 Aug 20;261(5124):1055-8
– reference: 17717690 - Brain Struct Funct. 2007 Sep;212(2):149-79
– reference: 20620877 - Neuron. 2010 Jun 24;66(6):921-36
– reference: 20559337 - Nat Rev Neurosci. 2010 Jul;11(7):503-13
– reference: 20508034 - Learn Mem. 2010 Jun;17(6):297-305
– reference: 15232109 - Science. 2004 Jul 2;305(5680):96-9
– reference: 18441286 - Learn Mem. 2008 May;15(5):290-3
– reference: 16407110 - Proc Natl Acad Sci U S A. 2006 Jan 17;103(3):756-61
– reference: 19073430 - Neurotox Res. 2008 Oct;14(2-3):249-62
– reference: 18463175 - Learn Mem. 2008 May;15(5):357-67
– reference: 17251424 - J Neurosci. 2007 Jan 24;27(4):840-4
– reference: 11105653 - Prog Brain Res. 2000;126:287-301
– reference: 15820700 - Neuron. 2005 Apr 7;46(1):141-51
– reference: 22421138 - Proc Natl Acad Sci U S A. 2012 Mar 27;109(13):5086-91
– reference: 17585306 - Nat Rev Neurosci. 2007 Jul;8(7):536-46
– reference: 15987936 - J Neurosci. 2005 Jun 29;25(26):6066-75
– reference: 19494143 - J Neurosci. 2009 Jun 3;29(22):7208-19
– reference: 18480374 - J Neurophysiol. 2008 Jul;100(1):520-5
– reference: 18215627 - Neuron. 2008 Jan 24;57(2):314-25
– reference: 17173043 - Nat Neurosci. 2007 Jan;10(1):100-7
– reference: 22496747 - PLoS One. 2012;7(4):e33302
– reference: 17145511 - Neuron. 2006 Dec 7;52(5):921-31
– reference: 18066533 - Psychopharmacology (Berl). 2008 Apr;197(2):319-26
– reference: 21350486 - Nature. 2011 Feb 24;470(7335):535-9
– reference: 12242447 - Science. 2002 Sep 20;297(5589):2070-3
– reference: 20210846 - J Neuroendocrinol. 2010 May;22(5):355-61
– reference: 15729742 - Synapse. 2005 May;56(2):74-83
– reference: 12040201 - Science. 2002 May 31;296(5573):1709-11
– reference: 20430044 - Neuropsychologia. 2010 Jul;48(8):2339-56
– reference: 18565549 - Neuropharmacology. 2009;56 Suppl 1:177-85
– reference: 12079756 - Trends Neurosci. 2002 Jul;25(7):340-3
– reference: 14586019 - J Neurosci. 2003 Oct 29;23(30):9897-905
– reference: 8036517 - Science. 1994 Jul 29;265(5172):676-9
– reference: 15893643 - Neuroscience. 2005;133(1):193-207
– reference: 14599436 - Neurosci Biobehav Rev. 2003 Oct;27(6):555-79
– reference: 16157280 - Neuron. 2005 Sep 15;47(6):859-72
– reference: 21159980 - J Neurosci. 2010 Dec 15;30(50):17102-10
– reference: 21800317 - J Comp Neurol. 2011 Dec 15;519(18):3766-801
– reference: 22876225 - Front Behav Neurosci. 2012 Aug 03;6:50
– reference: 18599792 - Science. 2008 Jul 4;321(5885):140-3
– reference: 21944154 - Pain. 2011 Dec;152(12):2746-56
– reference: 15556023 - Trends Cogn Sci. 2004 Dec;8(12):539-46
– reference: 17934187 - Cereb Cortex. 2008 Jun;18(6):1407-14
– reference: 12431746 - Brain Res Bull. 2002 Nov 30;59(3):163-80
– reference: 8891652 - Exp Brain Res. 1996 Sep;111(2):215-32
– reference: 16421330 - Cereb Cortex. 2006 Dec;16(12):1759-65
– reference: 10234037 - J Neurosci. 1999 May 15;19(10):4090-101
– reference: 12843246 - J Neurosci. 2003 Jul 2;23(13):5472-6
– reference: 20109531 - Neuroscience. 2010 Apr 14;166(4):1023-35
– reference: 18708525 - Proc Natl Acad Sci U S A. 2008 Aug 19;105(33):11963-8
– reference: 12041532 - Science. 2002 May 31;296(5573):1610-1 author reply 1610-1
– reference: 19682591 - Neurobiol Learn Mem. 2010 Jan;93(1):37-45
– reference: 10341256 - J Neurosci. 1999 Jun 1;19(11):4585-94
– reference: 11488395 - Neuroscientist. 2001 Aug;7(4):293-302
– reference: 10377372 - J Neurosci. 1999 Jul 1;19(13):5666-73
– reference: 14960599 - J Neurosci. 2004 Feb 11;24(6):1288-95
– reference: 7996180 - J Neurosci. 1994 Dec;14(12):7347-56
– reference: 19483687 - Nat Neurosci. 2009 Jul;12(7):919-26
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Snippet Some have claimed that the medial prefrontal cortex (mPFC) mediates decision making. Others suggest mPFC is selectively involved in the retrieval of remote...
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SubjectTerms Association Learning - physiology
Decision Making - physiology
Hippocampus - physiology
Humans
Memory - physiology
Neural Pathways - physiology
Prefrontal Cortex - physiology
Title The role of medial prefrontal cortex in memory and decision making
URI https://www.ncbi.nlm.nih.gov/pubmed/23259943
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