Age-related changes in brain activation associated with dimensional shifts of attention: An fMRI study
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[1] Jonathan M. Campbell,et al. Peabody Picture Vocabulary Test , 2010 .
[2] Aaron L. Berkowitz,et al. Generation of novel motor sequences: The neural correlates of musical improvisation , 2008, NeuroImage.
[3] M. Mesulam,et al. Remapping attentional priorities: differential contribution of superior parietal lobule and intraparietal sulcus. , 2007, Cerebral cortex.
[4] Michael Petrides,et al. Selection between Competing Responses Based on Conditional Rules , 2007 .
[5] J. Wallis,et al. Neuroscience of Rule-Guided Behavior , 2007 .
[6] P. Zelazo. The Development of Rule Use in Childhood , 2007 .
[7] S. Petersen,et al. Development of distinct control networks through segregation and integration , 2007, Proceedings of the National Academy of Sciences.
[8] Walter Schneider,et al. The cognitive control network: Integrated cortical regions with dissociable functions , 2007, NeuroImage.
[9] M. Brammer,et al. Progressive increase of frontostriatal brain activation from childhood to adulthood during event‐related tasks of cognitive control , 2006, Human brain mapping.
[10] Yuko Munakata,et al. When labels hurt but novelty helps: children's perseveration and flexibility in a card-sorting task. , 2006, Child development.
[11] Silvia A. Bunge,et al. A Brain-Based Account of the Development of Rule Use in Childhood , 2006 .
[12] C. Liston,et al. Anterior Cingulate and Posterior Parietal Cortices Are Sensitive to Dissociable Forms of Conflict in a Task-Switching Paradigm , 2006, Neuron.
[13] Rainer Goebel,et al. Analysis of functional image analysis contest (FIAC) data with brainvoyager QX: From single‐subject to cortically aligned group general linear model analysis and self‐organizing group independent component analysis , 2006, Human brain mapping.
[14] E. Crone,et al. Neural evidence for dissociable components of task-switching. , 2006, Cerebral cortex.
[15] W. Overton,et al. The role of negative priming in preschoolers' flexible rule use on the dimensional change card sort task. , 2006, Child development.
[16] E. Darcy Burgund,et al. The development of sustained and transient neural activity , 2006, NeuroImage.
[17] Cameron S Carter,et al. Cognitive control involved in overcoming prepotent response tendencies and switching between tasks. , 2005, Cerebral cortex.
[18] Matthew R. G. Brown,et al. Neural processes associated with antisaccade task performance investigated with event-related FMRI. , 2005, Journal of neurophysiology.
[19] M. Brass,et al. Involvement of the inferior frontal junction in cognitive control: Meta‐analyses of switching and Stroop studies , 2005, Human brain mapping.
[20] Joshua W. Brown,et al. Learned Predictions of Error Likelihood in the Anterior Cingulate Cortex , 2005, Science.
[21] Antigona Martinez,et al. Early development of subcortical regions involved in non-cued attention switching. , 2004, Developmental science.
[22] L Martyn Klassen,et al. Robust automated shimming technique using arbitrary mapping acquisition parameters (RASTAMAP) , 2004, Magnetic resonance in medicine.
[23] Alison R Preston,et al. Comparison of spiral-in/out and spiral-out BOLD fMRI at 1.5 and 3 T , 2004, NeuroImage.
[24] Thomas E. Nichols,et al. Switching attention and resolving interference: fMRI measures of executive functions , 2003, Neuropsychologia.
[25] Ulrich Müller,et al. The development of executive function in early childhood: I. The development of executive function. , 2003 .
[26] C. Chabris,et al. Neural mechanisms of general fluid intelligence , 2003, Nature Neuroscience.
[27] Suzanne E. Welcome,et al. Mapping cortical change across the human life span , 2003, Nature Neuroscience.
[28] Eliot Hazeltine,et al. Dissociable Contributions of Prefrontal and Parietal Cortices to Response Selection , 2002, NeuroImage.
[29] D. Stuss,et al. Principles of frontal lobe function , 2002 .
[30] Josef Perner,et al. What causes 3‐year‐olds' difficulty on the dimensional change card sorting task? , 2002 .
[31] T. Shallice,et al. Task Switching: A PDP Model , 2002, Cognitive Psychology.
[32] Gary H. Glover,et al. A Developmental fMRI Study of the Stroop Color-Word Task , 2002, NeuroImage.
[33] Y. Munakata,et al. Active versus latent representations: a neural network model of perseveration, dissociation, and decalage. , 2002, Developmental psychobiology.
[34] M. Corbetta,et al. Control of goal-directed and stimulus-driven attention in the brain , 2002, Nature Reviews Neuroscience.
[35] J. Gabrieli,et al. Immature Frontal Lobe Contributions to Cognitive Control in Children Evidence from fMRI , 2002, Neuron.
[36] A. Toga,et al. Mapping Continued Brain Growth and Gray Matter Density Reduction in Dorsal Frontal Cortex: Inverse Relationships during Postadolescent Brain Maturation , 2001, The Journal of Neuroscience.
[37] Matthew F. S. Rushworth,et al. Attention systems and the organization of the human parietal cortex , 2001, NeuroImage.
[38] J. Duncan,et al. Common regions of the human frontal lobe recruited by diverse cognitive demands , 2000, Trends in Neurosciences.
[39] John N. Towse,et al. Understanding the dimensional change card sort: Perspectives from task success and failure , 2000 .
[40] J. Cohen,et al. Dissociating the role of the dorsolateral prefrontal and anterior cingulate cortex in cognitive control. , 2000, Science.
[41] Ravi S. Menon,et al. A transmit‐only/receive‐only (TORO) RF system for high‐field MRI/MRS applications , 2000, Magnetic resonance in medicine.
[42] Alan C. Evans,et al. Brain development during childhood and adolescence: a longitudinal MRI study , 1999, Nature Neuroscience.
[43] T. Robbins,et al. Dissociating executive mechanisms of task control following frontal lobe damage and Parkinson's disease. , 1998, Brain : a journal of neurology.
[44] X. Hu,et al. 4 T-fMRI study of nonspatial shifting of selective attention: cerebellar and parietal contributions. , 1998, Journal of neurophysiology.
[45] R. Turner,et al. Event-Related fMRI: Characterizing Differential Responses , 1998, NeuroImage.
[46] Jonathan D. Cohen,et al. A Developmental Functional MRI Study of Prefrontal Activation during Performance of a Go-No-Go Task , 1997, Journal of Cognitive Neuroscience.
[47] Jonathan D. Cohen,et al. Improved Assessment of Significant Activation in Functional Magnetic Resonance Imaging (fMRI): Use of a Cluster‐Size Threshold , 1995, Magnetic resonance in medicine.
[48] J. Talairach,et al. Co-Planar Stereotaxic Atlas of the Human Brain: 3-Dimensional Proportional System: An Approach to Cerebral Imaging , 1988 .
[49] F. J. Friedrich,et al. Effects of parietal injury on covert orienting of attention , 1984, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[50] F. J. Friedrich,et al. Effects of parietal injury on covert orienting of visual attention , 1984 .
[51] P. Huttenlocher. Synaptic density in human frontal cortex - developmental changes and effects of aging. , 1979, Brain research.
[52] P. Yakovlev,et al. The myelogenetic cycles of regional maturation of the brain , 1967 .
[53] Silvia A. Bunge,et al. Neural representations used to specify action , 2008 .
[54] J Bruce Morton,et al. Flankers facilitate 3-year-olds' performance in a card-sorting task. , 2008, Developmental psychology.
[55] Philip David Zelazo,et al. The Dimensional Change Card Sort (DCCS): a method of assessing executive function in children , 2006, Nature Protocols.
[56] Sarah Durston,et al. A shift from diffuse to focal cortical activity with development. , 2006, Developmental science.
[57] Natasha Z. Kirkham,et al. ARTICLE WITH PEER COMMENTARIES AND RESPONSE Helping children apply their knowledge to their behavior on a dimension-switching task , 2003 .
[58] Hans Forssberg,et al. Increased Brain Activity in Frontal and Parietal Cortex Underlies the Development of Visuospatial Working Memory Capacity during Childhood , 2002, Journal of Cognitive Neuroscience.
[59] A. Diamond. Normal development of prefrontal cortex from birth to young adulthood: Cognitive functions, anatomy, and biochemistry. , 2002 .
[60] H. Fukuyama,et al. Dissociable mechanisms of attentional control within the human prefrontal cortex. , 2001, Cerebral cortex.
[61] E. Miller,et al. An integrative theory of prefrontal cortex function. , 2001, Annual review of neuroscience.
[62] G. E. Alexander,et al. Parallel organization of functionally segregated circuits linking basal ganglia and cortex. , 1986, Annual review of neuroscience.
[63] Alexandre Minkowski. Regional development of the brain in early life : a symposium organized by the Council for International Organizations of Medical Sciences (established under the joint auspices of UNESCO & WHO) and by the Deĺeǵation à la Recherche Scientifique et Technique , 1967 .
[64] Jonathan S. Cant,et al. Attention to form or surface properties modulates different regions of human occipitotemporal cortex. , 2007, Cerebral cortex.