Direct evidence for a prefrontal contribution to the control of proactive interference in verbal working memory

被引:68
作者
Feredoes, Eva [1 ]
Tononi, Giulio
Postle, Bradley R.
机构
[1] Univ Wisconsin, Dept Psychol, 1202 W Johnson St, Madison, WI USA
[2] Univ Wisconsin, Dept Psychiat, Madison, WI 53719 USA
关键词
cognitive control; inferior frontal gyrus; transcranial magnetic stimulation;
D O I
10.1073/pnas.0604509103
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Controlling the effects of proactive interference (PI), the deleterious effect of prior mental activity on current memory representations, is believed to be a key function of the prefrontal cortex. This view is supported by neuroimaging evidence for a correlation between the longer reaction times caused by high PI conditions of a working memory task and increased activity in left inferior frontal gyrus (IFG) of the prefrontal cortex. An alternative that has never been ruled out, however, is that this left IFG effect may merely reflect sensitivity to such nonspecific factors as difficulty and/or time on task. To resolve this confound, we applied the interference methodology of repetitive transcranial magnetic stimulation (rTMS) to the left IFG and two control regions while subjects performed delayed letter recognition. rTMS was guided with high-resolution magnetic resonance images and was time-locked to the onset of the memory probe. The effect of rTMS, a disruption of accuracy restricted to high-PI probes, was specific to the left IFG. These results demonstrate that unpredictable, phasic disruption of the left IFG selectively disrupts control of responses to high-conflict verbal working memory probes, and they conclusively reject nonspecific alternative accounts.
引用
收藏
页码:19530 / 19534
页数:5
相关论文
共 23 条
[1]   Frontal lobe mechanisms that resolve proactive interference [J].
Badre, D ;
Wagner, AD .
CEREBRAL CORTEX, 2005, 15 (12) :2003-2012
[2]   Dissociable controlled retrieval and generalized selection mechanisms in ventrolateral prefrontal cortex [J].
Badre, D ;
Poldrack, RA ;
Paré-Blagoev, EJ ;
Insler, RZ ;
Wagner, AD .
NEURON, 2005, 47 (06) :907-918
[3]  
BRAVER TS, 2006, IN PRESS VARIATION W
[4]  
DAMASIO H, 1995, HUMAN BRAIN ANATOMY
[5]   INDIVIDUAL-DIFFERENCES IN WORKING MEMORY AND READING [J].
DANEMAN, M ;
CARPENTER, PA .
JOURNAL OF VERBAL LEARNING AND VERBAL BEHAVIOR, 1980, 19 (04) :450-466
[6]   Working memory deficits in children with low achievements in the national curriculum at 7 years of age [J].
Gathercole, SE ;
Pickering, SJ .
BRITISH JOURNAL OF EDUCATIONAL PSYCHOLOGY, 2000, 70 :177-194
[7]   Interference with performance of a response selection task that has no working memory component: An rTMS comparison of the dorsolateral prefrontal and medial frontal cortex [J].
Hadland, KA ;
Rushworth, MFS ;
Passingham, RE ;
Jahanshahi, M ;
Rothwell, JC .
JOURNAL OF COGNITIVE NEUROSCIENCE, 2001, 13 (08) :1097-1108
[8]  
Hamilton AC, 2005, COGN AFFECT BEHAV NE, V5, P1
[9]   A RATING SCALE FOR DEPRESSION [J].
HAMILTON, M .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 1960, 23 (01) :56-62
[10]   Brain mechanisms of proactive interference in working memory [J].
Jonides, J ;
Nee, DE .
NEUROSCIENCE, 2006, 139 (01) :181-193