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  • Current models of cognition and behavioral diagnosis emphasize categorical classification over continuous considerations of function and promote the “differential diagnosis” of various conditions according to observational criteria. However, an overemphasis on a purely behavioral, categorical approach to understanding human function fails to address the comorbidity of different disorders and does not include a consideration of overlapping levels of function, from “pathological” through “normal,” to “gifted” or exceptional. The frequent co-occurrence of “gifted” and “pathological” function is thus difficult to understand from a corticocentric and purely behavioral and observational point of view. This article reviews “giftedness” in relation to the diagnosis of attention-deficit hyperactivity disorder, coexistence of which is termed “twice exceptional.” It additionally considers problems in assessing these functions using current neuropsychological tests and methodologies that are presumably based upon a corticocentric model of cognition. (PsycInfo Database Record (c) 2022 APA, all rights reserved) (Source: journal abstract)

  • Current cortico-centric models of cognition lack a cohesive neuroanatomic framework that sufficiently considers overlapping levels of function, from “pathological” through “normal” to “gifted” or exceptional ability. While most cognitive theories presume an evolutionary context, few actively consider the process of adaptation, including concepts of neurodevelopment. Further, the frequent co-occurrence of “gifted” and “pathological” function is difficult to explain from a cortico-centric point of view. This comprehensive review paper proposes a framework that includes the brain’s vertical organization and considers “giftedness” from an evolutionary and neurodevelopmental vantage point. We begin by discussing the current cortico-centric model of cognition and its relationship to intelligence. We then review an integrated, dual-tiered model of cognition that better explains the process of adaptation by simultaneously allowing for both stimulus-based processing and higher-order cognitive control. We consider the role of the basal ganglia within this model, particularly in relation to reward circuitry and instrumental learning. We review the important role of white matter tracts in relation to speed of adaptation and development of behavioral mastery. We examine the cerebellum’s critical role in behavioral refinement and in cognitive and behavioral automation, particularly in relation to expertise and giftedness. We conclude this integrated model of brain function by considering the savant syndrome, which we believe is best understood within the context of a dual-tiered model of cognition that allows for automaticity in adaptation as well as higher-order executive control. (PsycINFO Database Record (c) 2016 APA, all rights reserved) (Source: journal abstract)

Última actualización de la base de datos: 4/10/26, 6:08 (CEST)

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