Neuronal representation of response-outcome in the primate prefrontal cortex

被引:46
作者
Tsujimoto, S [1 ]
Sawaguchi, T [1 ]
机构
[1] Hokkaido Univ, Grad Sch Med, Lab Cognit Neurobiol, Kita Ku, Sapporo, Hokkaido 0608638, Japan
关键词
flexible control of behaviour; monkey; prefrontal cortex; response-outcome; reward; single neuron activity;
D O I
10.1093/cercor/bhg090
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
For flexible control of behaviour, it is important to associate preceding behavioural response with its outcome. Since the dorsolateral prefrontal cortex (dlPFC) plays a major role in such control, it is likely that this area has a neuronal mechanism of coding response-outcome, such as reward/non-reward, based on the nature of the behavioural response made immediately before. To test this hypothesis, we examined neuronal activity in the dlPFC while monkeys performed a variant of the oculomotor delayed-response (ODR) task that had two reward conditions. In this task, the correct response was rewarded in half of the trials only and the subject could not expect the outcome (reward/non-reward). The response was followed by a fixation of 2 s (F2-period). We also employed a fixation (FIX) task that required monkeys to fixate on the peripheral target only, with two reward conditions that were similar to those in the ODR task. Post-response activity of a subset of dlPFC neurons was modulated by both the direction of the preceding response and its outcome. None of these neurons showed directional F2-period activity in the FIX task. These results suggest that a subset of dlPFC neurons represent response-outcome (i.e. reward/non-reward associated with directional saccade made immediately before).
引用
收藏
页码:47 / 55
页数:9
相关论文
共 44 条
[1]   Neural activity in the primate prefrontal cortex during associative learning [J].
Asaad, WF ;
Rainer, G ;
Miller, EK .
NEURON, 1998, 21 (06) :1399-1407
[2]   Goal-directed instrumental action: contingency and incentive learning and their cortical substrates [J].
Balleine, BW ;
Dickinson, A .
NEUROPHARMACOLOGY, 1998, 37 (4-5) :407-419
[3]   PARTICIPATION OF PREFRONTAL NEURONS IN THE PREPARATION OF VISUALLY GUIDED EYE-MOVEMENTS IN THE RHESUS-MONKEY [J].
BOCH, RA ;
GOLDBERG, ME .
JOURNAL OF NEUROPHYSIOLOGY, 1989, 61 (05) :1064-1084
[4]  
Bruce CG, 1985, J NEUROPHYSIOL, V53, P606
[5]   A computational approach to prefrontal cortex, cognitive control and schizophrenia: Recent developments and current challenges [J].
Cohen, JD ;
Braver, TS ;
OReilly, RC .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 1996, 351 (1346) :1515-1527
[6]   Responses of human frontal cortex to surprising events are predicted by formal associative learning theory [J].
Fletcher, PC ;
Anderson, JM ;
Shanks, DR ;
Honey, R ;
Carpenter, TA ;
Donovan, T ;
Papadakis, N ;
Bullmore, ET .
NATURE NEUROSCIENCE, 2001, 4 (10) :1043-1048
[7]   VISUOSPATIAL CODING IN PRIMATE PREFRONTAL NEURONS REVEALED BY OCULOMOTOR PARADIGMS [J].
FUNAHASHI, S ;
BRUCE, CJ ;
GOLDMANRAKIC, PS .
JOURNAL OF NEUROPHYSIOLOGY, 1990, 63 (04) :814-831
[8]   WORKING-MEMORY AND PREFRONTAL CORTEX [J].
FUNAHASHI, S ;
KUBOTA, K .
NEUROSCIENCE RESEARCH, 1994, 21 (01) :1-11
[9]   NEURONAL-ACTIVITY RELATED TO SACCADIC EYE-MOVEMENTS IN THE MONKEYS DORSOLATERAL PREFRONTAL CORTEX [J].
FUNAHASHI, S ;
BRUCE, CJ ;
GOLDMANRAKIC, PS .
JOURNAL OF NEUROPHYSIOLOGY, 1991, 65 (06) :1464-1483
[10]   Neuronal interactions related to working memory processes in the primate prefrontal cortex revealed by cross-correlation analysis [J].
Funahashi, S ;
Inoue, M .
CEREBRAL CORTEX, 2000, 10 (06) :535-551