A critical question for neuropsychology is how complex brain networks react to damage. Here, we address this question for the well-known executive control or multiple-demand (MD) system, a fronto-parietal network showing increased activity with many different kinds of cognitive demand, including standard tests of fluid intelligence. Using fMRI, we ask how focal frontal lobe damage affects MD activity during a standard fluid intelligence task. Despite poor behavioral performance, frontal patients showed increased fronto-parietal activity relative to controls. The activation difference was not accounted for by difference in IQ. Moreover, rather than specific focus on perilesional or contralesional cortex, additional recruitment was distribute...
Severe capacity limits, closely associated with fluid intelligence, arise in learning and use of new...
Tests of fluid intelligence predict success in a wide range of cognitive activities. Much uncertaint...
Damage to parietal cortex impairs visuospatial judgments. However, it is currently unknown how this ...
A critical question for neuropsychology is how complex brain networks react to damage. Here, we addr...
A critical question for neuropsychology is how complex brain networks react to damage. Here, we addr...
Numerous brain lesion and fMRI studies have linked individual differences in executive abilities and...
A set of frontoparietal brain regions - the multiple-demand (MD) system [1, 2] - has been linked to ...
© 2020 Elsevier Ltd Numerous brain lesion and fMRI studies have linked individual differences in exe...
Classical executive tasks, such as Wisconsin card-sorting and verbal fluency, are widely used as tes...
A set of frontoparietal brain regions-the multiple-demand (MD) system 1,2-has been linked to fluid i...
Herein I research the role of the basal ganglia and prefrontal cortex in visual working memory and a...
The large variety of tasks that humans can perform is governed by a small number of key frontal-insu...
The large variety of tasks that humans can perform is governed by a small number of key frontal-insu...
The large variety of tasks that humans can perform is governed by a small number of key frontal-insu...
The large variety of tasks that humans can perform is governed by a small number of key frontal-insu...
Severe capacity limits, closely associated with fluid intelligence, arise in learning and use of new...
Tests of fluid intelligence predict success in a wide range of cognitive activities. Much uncertaint...
Damage to parietal cortex impairs visuospatial judgments. However, it is currently unknown how this ...
A critical question for neuropsychology is how complex brain networks react to damage. Here, we addr...
A critical question for neuropsychology is how complex brain networks react to damage. Here, we addr...
Numerous brain lesion and fMRI studies have linked individual differences in executive abilities and...
A set of frontoparietal brain regions - the multiple-demand (MD) system [1, 2] - has been linked to ...
© 2020 Elsevier Ltd Numerous brain lesion and fMRI studies have linked individual differences in exe...
Classical executive tasks, such as Wisconsin card-sorting and verbal fluency, are widely used as tes...
A set of frontoparietal brain regions-the multiple-demand (MD) system 1,2-has been linked to fluid i...
Herein I research the role of the basal ganglia and prefrontal cortex in visual working memory and a...
The large variety of tasks that humans can perform is governed by a small number of key frontal-insu...
The large variety of tasks that humans can perform is governed by a small number of key frontal-insu...
The large variety of tasks that humans can perform is governed by a small number of key frontal-insu...
The large variety of tasks that humans can perform is governed by a small number of key frontal-insu...
Severe capacity limits, closely associated with fluid intelligence, arise in learning and use of new...
Tests of fluid intelligence predict success in a wide range of cognitive activities. Much uncertaint...
Damage to parietal cortex impairs visuospatial judgments. However, it is currently unknown how this ...