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  1. The parieto-frontal integration theory (P-FIT) of intelligence: Converging neuroimaging evidence.Rex E. Jung & Richard J. Haier - 2007 - Behavioral and Brain Sciences 30 (2):135-154.
    Here we review 37 modern neuroimaging studies in an attempt to address this question posed by Halstead (1947) as he and other icons of the last century endeavored to understand how brain and behavior are linked through the expression of intelligence and reason. Reviewing studies from functional (i.e., functional magnetic resonance imaging, positron emission tomography) and structural (i.e., magnetic resonance spectroscopy, diffusion tensor imaging, voxel-based morphometry) neuroimaging paradigms, we report a striking consensus suggesting that variations in a distributed network predict (...)
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  • Functional neuroanatomy of three-term relational reasoning.Vinod Goel & Raymond J. Dolan - 2001 - Neuropsychologia 39 (9):901-909.
    In a recent study we demonstrated that reasoning with categorical syllogisms engages two dissociable mechanisms. Reasoning involving concrete sentences engaged a left hemisphere linguistic system while formally identical arguments, involving abstract sentences, recruited a parietal spatial network. The involvement of a parietal visuo–spatial system in abstract syllogism reasoning raised the question whether argument forms involving explicit spatial relations are sufficient to engage the parietal system? We addressed this question in an event-related fMRI study of three-term relational reasoning, using sentences with (...)
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  • Dissociation of Mechanisms Underlying Syllogistic Reasoning.Vinod Goel, Christian Buchel, Chris Frith & Raymond J. Dolan - 2000 - NeuroImage 12 (5):504-514.
    A key question for cognitive theories of reasoning is whether logical reasoning is inherently a sentential linguistic process or a process requiring spatial manipulation and search. We addressed this question in an event-related fMRI study of syllogistic reasoning, using sentences with and without semantic content. Our findings indicate involvement of two dissociable networks in deductive reasoning. During content-based reasoning a left hemisphere temporal system was recruited. By contrast, a formally identical reasoning task, which lacked semantic content, activated a parietal system. (...)
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  • A mechanism for cognitive dynamics: neuronal communication through neuronal coherence.Pascal Fries - 2005 - Trends in Cognitive Sciences 9 (10):474-480.
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  • Perspectives on the Diagnosis of Giftedness.Kurt A. Heller - unknown
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