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  1. The Computational and Neural Basis of Cognitive Control: Charted Territory and New Frontiers.Matthew M. Botvinick - 2014 - Cognitive Science 38 (6):1249-1285.
    Cognitive control has long been one of the most active areas of computational modeling work in cognitive science. The focus on computational models as a medium for specifying and developing theory predates the PDP books, and cognitive control was not one of the areas on which they focused. However, the framework they provided has injected work on cognitive control with new energy and new ideas. On the occasion of the books' anniversary, we review computational modeling in the study of cognitive (...)
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  • Dispositional Mindfulness and Attentional Control: The Specific Association Between the Mindfulness Facets of Non-judgment and Describing With Flexibility of Early Operating Orienting in Conflict Detection.Lin Sørensen, Berge Osnes, Endre Visted, Julie Lillebostad Svendsen, Steinunn Adolfsdottir, Per-Einar Binder & Elisabeth Schanche - 2018 - Frontiers in Psychology 9.
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  • Toward a Unified View of Cognitive Control.Dario D. Salvucci & Niels A. Taatgen - 2011 - Topics in Cognitive Science 3 (2):227-230.
    Allen Newell (1973) once observed that psychology researchers were playing “twenty questions with nature,” carving up human cognition into hundreds of individual phenomena but shying away from the difficult task of integrating these phenomena with unifying theories. We argue that research on cognitive control has followed a similar path, and that the best approach toward unifying theories of cognitive control is that proposed by Newell, namely developing theories in computational cognitive architectures. Threaded cognition, a recent theory developed within the ACT-R (...)
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  • Search and the Aging Mind: The Promise and Limits of the Cognitive Control Hypothesis of Age Differences in Search.Rui Mata & Bettina von Helversen - 2015 - Topics in Cognitive Science 7 (3):416-427.
    Search is a prerequisite for successful performance in a broad range of tasks ranging from making decisions between consumer goods to memory retrieval. How does aging impact search processes in such disparate situations? Aging is associated with structural and neuromodulatory brain changes that underlie cognitive control processes, which in turn have been proposed as a domain‐general mechanism controlling search in external environments as well as memory. We review the aging literature to evaluate the cognitive control hypothesis that suggests that age‐related (...)
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  • Search and the Aging Mind: The Promise and Limits of the Cognitive Control Hypothesis of Age Differences in Search.Rui Mata & Bettina Helversen - 2015 - Topics in Cognitive Science 7 (3):416-427.
    Search is a prerequisite for successful performance in a broad range of tasks ranging from making decisions between consumer goods to memory retrieval. How does aging impact search processes in such disparate situations? Aging is associated with structural and neuromodulatory brain changes that underlie cognitive control processes, which in turn have been proposed as a domain-general mechanism controlling search in external environments as well as memory. We review the aging literature to evaluate the cognitive control hypothesis that suggests that age-related (...)
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  • Control of Perception Should be Operationalized as a Fundamental Property of the Nervous System.Warren Mansell - 2011 - Topics in Cognitive Science 3 (2):257-261.
    This commentary proposes that “cognitive control” is neither componential nor emergent, but a fundamental feature of behavior. The term “control” requires an operational definition. This is best provided by the negative feedback loop that utilizes behavior to control perception; it does not control behavior per se. In order to model complex cognitive control, Perceptual Control Theory proposes that loops are organized into a dissociable hierarchical network (PCT; Powers, Clark, & McFarland, 1960; Powers, 1973a, 2008). In this way, behavior is dynamically (...)
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  • Cognitive Control: Componential and Yet Emergent.Ion Juvina - 2011 - Topics in Cognitive Science 3 (2):242-246.
    In this commentary, I will argue that the componential and emergent views of cognitive control as defined by Cooper (2010) do not necessarily oppose each other, and I will try to make a case for their interdependence. First, I will use the construct of cognitive inhibition—one of the main componential control functions mentioned in the target articles—to illustrate my line of reasoning. Then, I will comment on how some of the target articles, each from a different perspective, bring arguments in (...)
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  • Two Aspects of Activation: Arousal and Subjective Significance – Behavioral and Event-Related Potential Correlates Investigated by Means of a Modified Emotional Stroop Task.Kamil Imbir, Tomasz Spustek, Gabriela Bernatowicz, Joanna Duda & Jarosław Żygierewicz - 2017 - Frontiers in Human Neuroscience 11.
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  • Subjective Significance Shapes Arousal Effects on Modified Stroop Task Performance: A Duality of Activation Mechanisms Account.Kamil K. Imbir - 2016 - Frontiers in Psychology 7.
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  • Event-Related Potential Correlates of Valence, Arousal, and Subjective Significance in Processing of an Emotional Stroop Task.Kamil K. Imbir, Joanna Duda-Goławska, Maciej Pastwa, Marta Jankowska & Jarosław Żygierewicz - 2021 - Frontiers in Human Neuroscience 15.
    The present study is the first to measure event-related potentials associated with the processing of the emotional Stroop task with the use of an orthogonal factorial manipulation for emotional valence, arousal, and subjective significance. The current study aimed to investigate concurrently the role of the three dimensions describing the emotion-laden words for interference control measured in the classical version of the EST paradigm. The results showed that reaction times were affected by the emotional valence of presented words and the interactive (...)
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  • The Evolutionary Origins of Cognitive Control.Thomas T. Hills - 2011 - Topics in Cognitive Science 3 (2):231-237.
    The question of domain-specific versus domain-general processing is an ongoing source of inquiry surrounding cognitive control. Using a comparative evolutionary approach, Stout (2010) proposed two components of cognitive control: coordinating hierarchical action plans and social cognition. This article reports additional molecular and experimental evidence supporting a domain-general attentional process coordinating hierarchical action plans, with the earliest such control processing originating in the capacity of dynamic foraging behaviors—predating the vertebrate-invertebrate divergence (c. 700 million years ago). Further discussion addresses evidence required for (...)
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  • Semantics and Metaphysics in Informatics: Toward an Ontology of Tasks (a Reply to Lenartowicz et al. 2010, Towards an Ontology of Cognitive Control).Carrie Figdor - 2011 - Topics in Cognitive Science 3 (2):222-226.
    This article clarifies three principles that should guide the development of any cognitive ontology. First, that an adequate cognitive ontology depends essentially on an adequate task ontology; second, that the goal of developing a cognitive ontology is independent of the goal of finding neural implementations of the processes referred to in the ontology; and third, that cognitive ontologies are neutral regarding the metaphysical relationship between cognitive and neural processes.
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  • The Role of Executive Function and Theory of Mind in Pragmatic Computations.Sarah Fairchild & Anna Papafragou - 2021 - Cognitive Science 45 (2):e12938.
    In sentences such as “Some dogs are mammals,” the literal semantic meaning (“Some and possibly all dogs are mammals”) conflicts with the pragmatic meaning (“Not all dogs are mammals,” known as a scalar implicature). Prior work has shown that adults vary widely in the extent to which they adopt the semantic or pragmatic meaning of such utterances, yet the underlying reason for this variation is unknown. Drawing on theoretical models of scalar implicature derivation, we explore the hypothesis that the cognitive (...)
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