Attention and cognitive control as emergent properties of information representation in working memory

被引:150
作者
Courtney S.M. [1 ,2 ]
机构
[1] Johns Hopkins University, Baltimore, MD
[2] Dept. of Psychol. and Brain Sciences, Johns Hopkins University, 227 Ames Hall, Baltimore, MD 21218
关键词
Prefrontal Cortex; Parietal Cortex; Stimulus Feature; Visual Working Memory; Dorsal Stream;
D O I
10.3758/CABN.4.4.501
中图分类号
学科分类号
摘要
A hallmark of primate, and particularly human, behavior is cognitive control, the ability to integrate information from a multitude of sources and use that information to flexibly guide behavior in order to achieve an infinite number of goals. The neural mechanisms of cognitive control have yet to be fully elucidated, although the prefrontal cortex is known to play a critical role. Here, I review evidence suggesting that a unifying principle regarding the role of various portions of the prefrontal cortex in a wide range of cognitive tasks is the active maintenance in working memory of different types of currently relevant information - from specific stimulus features, to instructional cues, to motivational goals and contexts. I argue that the key to demonstrating the existence of this domain-dependent organization lies in a better understanding of the nature of the representation of this information and the ways in which this information itself controls cognition and behavior. Copyright 2004 Psychonomic Society, Inc.
引用
收藏
页码:501 / 516
页数:15
相关论文
共 149 条
[1]
Alain C., Arnott S.R., Hevenor S., Graham S., Grady C.L., What" and "where" in the human auditory system, Proceedings of the National Academy of Sciences, 98, pp. 12301-12306, (2001)
[2]
Ando J., Ono Y., Wright M.J., Genetic structure of spatial and verbal working memory, Behavior Genetics, 31, pp. 615-624, (2001)
[3]
Arnott S.R., Binns M.A., Grady C.L., Alain C., Assessing the auditory dual-pathway model in humans, NeuroImage, 22, pp. 401-408, (2004)
[4]
Arnott S.R., Grady C.L., Hevenor S.J., Graham S., Alain C., The functional organization of auditory working memory as revealed by fMRI, Journal of Cognitive Neuroscience
[5]
Asaad W.F., Rainer G., Miller E.K., Neural activity in the primate prefrontal cortex during associative learning, Neuron, 21, pp. 1399-1407, (1998)
[6]
Awh E., Jonides J., Reuter-Lorenz P.A., Rehearsal in spatial working memory, Journal of Experimental Psychology: Human Perception & Performance, 24, pp. 780-790, (1998)
[7]
Awh E., Jonides J., Smith E.E., Schumacher E.H., Koeppe R.A., Katz S., Dissociation of storage and rehearsal in verbal working memory: Evidence from positron emission tomography, Psychological Science, 7, pp. 25-31, (1996)
[8]
Baddeley A.D., Hitch G.J., Working memory, The Psychology of Learning and Motivation, pp. 47-90, (1974)
[9]
Baddeley A.D., Logie R.H., Working memory: The multiple-component model, Models of Working Memory: Mechanisms of Active Maintenance and Executive Control, pp. 28-61, (1999)
[10]
Baker S.C., Frith C.D., Frackowiak R.S., Dolan R.J., Active representation of shape and spatial location in man, Cerebral Cortex, 6, pp. 612-619, (1996)