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  1. Optimized Gamma Synchronization Enhances Functional Binding of Fronto-Parietal Cortices in Mathematically Gifted Adolescents during Deductive Reasoning.Li Zhang, John Q. Gan & Haixian Wang - 2014 - Frontiers in Human Neuroscience 8.
  • Causal beliefs lead to toolmaking, which require handedness for motor control.Lewis Wolpert - 2003 - Behavioral and Brain Sciences 26 (2):242-242.
    Toolmaking requires motor skills that in turn require handedness, so that there is no competition between the two sides of the brain. Thus, handedness is not necessarily linked to vocalization but to the origin of causal beliefs required for making complex tools. Language may have evolved from these processes.
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  • Meta-analysis: how does posterior parietal cortex contribute to reasoning?Carter Wendelken - 2014 - Frontiers in Human Neuroscience 8.
  • Conditional routing of information to the cortex: A model of the basal ganglia’s role in cognitive coordination.Andrea Stocco, Christian Lebiere & John R. Anderson - 2010 - Psychological Review 117 (2):541-574.
  • Syllogisms delivered in an angry voice lead to improved performance and engagement of a different neural system compared to neutral voice.Kathleen W. Smith, Laura-Lee Balkwill, Oshin Vartanian & Vinod Goel - 2015 - Frontiers in Human Neuroscience 9.
  • Dissociable Neural Systems Underwrite Logical Reasoning in the Context of Induced Emotions with Positive and Negative Valence.Kathleen W. Smith, Oshin Vartanian & Vinod Goel - 2014 - Frontiers in Human Neuroscience 8.
  • Imaging deductive reasoning and the new paradigm.Mike Oaksford - 2015 - Frontiers in Human Neuroscience 9.
  • Individual differences in working memory and conditional reasoning with concrete and abstract content.Henry Markovits, Celine Doyon & Michael Simoneau - 2002 - Thinking and Reasoning 8 (2):97 – 107.
    This study examined the hypothesis that conditional reasoning involves visual short-term memory resources (Johnson-Laird, 1985). A total of 147 university students were given measures of verbal and visual short-term memory capacity and a series of concrete and abstract conditional reasoning problems. Results indicate that there is a positive correlation between verbal working memory capacity and reasoning with both concrete and abstract premises. A positive correlation was also obtained between visual working memory capacity and reasoning with concrete premises.
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  • How our brains reason logically.Markus Knauff - 2007 - Topoi 26 (1):19-36.
    The aim of this article is to strengthen links between cognitive brain research and formal logic. The work covers three fundamental sorts of logical inferences: reasoning in the propositional calculus, i.e. inferences with the conditional “if...then”, reasoning in the predicate calculus, i.e. inferences based on quantifiers such as “all”, “some”, “none”, and reasoning with n-place relations. Studies with brain-damaged patients and neuroimaging experiments indicate that such logical inferences are implemented in overlapping but different bilateral cortical networks, including parts of the (...)
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  • The Role of Metacognitive Components in Creative Thinking.Xiaoyu Jia, Weijian Li & Liren Cao - 2019 - Frontiers in Psychology 10.
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  • Brain Imaging, Forward Inference, and Theories of Reasoning.Evan Heit - 2014 - Frontiers in Human Neuroscience 8.
  • : Working memory, inhibitory control and the development of children's reasoning.Simon J. Handley, A. Capon, M. Beveridge, I. Dennis & J. St B. T. Evans - 2004 - Thinking and Reasoning 10 (2):175-195.
  • Attentional Competition and Semantic Integration in Low- and High-Span Readers.Connie Qun Guan, Scott H. Fraundorf, Mingle Gao, Chong Zhang & Brian MacWhinney - 2022 - Frontiers in Psychology 13.
    The goal of the current study is to investigate the effects of the distractive textual information on the activation of predictive inference online, and how the readers with high or low working memory capacity differ in their online activation and text memory. To test the two hypothesis of attentional competition and semantic integration, we conducted three experiments to investigate whether a local prediction and a global prediction, both of which could be derived from the description of a critical event, are (...)
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  • Indeterminacy tolerance as a basis of hemispheric asymmetry within prefrontal cortex.Vinod Goel - 2015 - Frontiers in Human Neuroscience 9.
  • Explaining modulation of reasoning by belief.Vinod Goel & Raymond J. Dolan - 2003 - Cognition 87 (1):B11-B22.
    Although deductive reasoning is a closed system, one's beliefs about the world can influence validity judgements. To understand the associated functional neuroanatomy of this belief-bias we studied 14 volunteers using event-related fMRI, as they performed reasoning tasks under neutral, facilitatory and inhibitory belief conditions. We found evidence for the engagement of a left temporal lobe system during belief-based reasoning and a bilateral parietal lobe system during belief-neutral reasoning. Activation of right lateral prefrontal cortex was evident when subjects inhibited a prepotent (...)
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  • Differential involvement of left prefrontal cortexin inductive and deductive reasoning.V. Goel - 2004 - Cognition 93 (3):B109-B121.
    While inductive and deductive reasoning are considered distinct logical and psychological processes, little is known about their respective neural basis. To address this issue we scanned 16 subjects with fMRI, using an event-related design, while they engaged in inductive and deductive reasoning tasks. Both types of reasoning were characterized by activation of left lateral prefrontal and bilateral dorsal frontal, parietal, and occipital cortices. Neural responses unique to each type of reasoning determined from the Reasoning Type by Task interaction indicated greater (...)
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  • Philosophical Thought Experiments, Intuitions, and Cognitive Equilibrium.Tamar Szabó Gendler - 2007 - Midwest Studies in Philosophy 31 (1):68-89.
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  • Philosophical thought experiments, intuitions, and cognitive equilibrium.Tamar Szabó Gendler - 2007 - In Peter A. French & Howard K. Wettstein (eds.), Philosophy and the Empirical. Blackwell. pp. 68-89.
    It is a commonplace that contemplation of an imaginary particular may have cognitive and motivational effects that differ from those evoked by an abstract description of an otherwise similar state of affairs. In his Treatise on Human Nature, Hume ([1739] 1978) writes forcefully of this.
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  • Adaptive domains of deontic reasoning.Laurence Fiddick - 2006 - Philosophical Explorations 9 (1):105 – 116.
    Deontic reasoning is reasoning about permission and obligation: what one may do and what one must do, respectively. Conceivably, people could reason about deontic matters using a purely formal deontic calculus. I review evidence from a range of psychological experiments suggesting that this is not the case. Instead, I argue that deontic reasoning is supported by a collection of dissociable cognitive adaptations for solving adaptive problems that likely would have confronted ancestral humans.
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  • Working memory and everyday conditional reasoning: Retrieval and inhibition of stored counterexamples.Wim De Neys, Walter Schaeken & Géry D'Ydewalle - 1995 - Thinking and Reasoning 11 (4):349-381.
    Two experiments examined the contribution of working memory (WM) to the retrieval and inhibition of background knowledge about counterexamples (alternatives and disablers, Cummins, ) during conditional reasoning. Experiment 1 presented a conditional reasoning task with everyday, causal conditionals to a group of people with high and low WM spans. High spans rejected the logically invalid AC and DA inferences to a greater extent than low spans, whereas low spans accepted the logically valid MP and MT inferences less frequently than high (...)
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  • From mouth to hand: Gesture, speech, and the evolution of right-handedness.Michael C. Corballis - 2003 - Behavioral and Brain Sciences 26 (2):199-208.
    The strong predominance of right-handedness appears to be a uniquely human characteristic, whereas the left-cerebral dominance for vocalization occurs in many species, including frogs, birds, and mammals. Right-handedness may have arisen because of an association between manual gestures and vocalization in the evolution of language. I argue that language evolved from manual gestures, gradually incorporating vocal elements. The transition may be traced through changes in the function of Broca's area. Its homologue in monkeys has nothing to do with vocal control, (...)
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  • The Oxford Handbook of Causal Reasoning.Michael Waldmann (ed.) - 2017 - Oxford, England: Oxford University Press.
    Causal reasoning is one of our most central cognitive competencies, enabling us to adapt to our world. Causal knowledge allows us to predict future events, or diagnose the causes of observed facts. We plan actions and solve problems using knowledge about cause-effect relations. Without our ability to discover and empirically test causal theories, we would not have made progress in various empirical sciences. In the past decades, the important role of causal knowledge has been discovered in many areas of cognitive (...)
  • Nothing new under the sun, or the moon, or both.Luca L. Bonatti, Paolo Cherubini & Carlo Reverberi - 2015 - Frontiers in Human Neuroscience 9.
  • Intuitive And Reflective Responses In Philosophy.Nick Byrd - 2014 - Dissertation, University of Colorado
    Cognitive scientists have revealed systematic errors in human reasoning. There is disagreement about what these errors indicate about human rationality, but one upshot seems clear: human reasoning does not seem to fit traditional views of human rationality. This concern about rationality has made its way through various fields and has recently caught the attention of philosophers. The concern is that if philosophers are prone to systematic errors in reasoning, then the integrity of philosophy would be threatened. In this paper, I (...)
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  • Can there be a cognitive neuroscience of central cognitive systems?Vinod Goel - 2004 - In Christina E. Erneling & David Martel Johnson (eds.), Mind As a Scientific Object. Oxford University Press. pp. 265.
  • Integrating Philosophy of Understanding with the Cognitive Sciences.Kareem Khalifa, Farhan Islam, J. P. Gamboa, Daniel Wilkenfeld & Daniel Kostić - 2022 - Frontiers in Systems Neuroscience 16.
    We provide two programmatic frameworks for integrating philosophical research on understanding with complementary work in computer science, psychology, and neuroscience. First, philosophical theories of understanding have consequences about how agents should reason if they are to understand that can then be evaluated empirically by their concordance with findings in scientific studies of reasoning. Second, these studies use a multitude of explanations, and a philosophical theory of understanding is well suited to integrating these explanations in illuminating ways.
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  • Three Levels of Naturalistic Knowledge.Andreas Stephens - 2019 - In Peter Gärdenfors, Antti Hautamäki, Frank Zenker & Mauri Kaipainen (eds.), Conceptual Spaces: Elaborations and Applications. Springer Verlag.
    A recent naturalistic epistemological account suggests that there are three nested basic forms of knowledge: procedural knowledge-how, conceptual knowledge-what, and propositional knowledge-that. These three knowledge-forms are grounded in cognitive neuroscience and are mapped to procedural, semantic, and episodic long-term memory respectively. This article investigates and integrates the neuroscientifically grounded account with knowledge-accounts from cognitive ethology and cognitive psychology. It is found that procedural and semantic memory, on a neuroscientific level of analysis, matches an ethological reliabilist account. This formation also matches (...)
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  • Spatial reasoning as verbal reasoning.Antje Krumnack, Leandra Bucher, Jelica Nejasmic & Markus Knauff - 2010 - In S. Ohlsson & R. Catrambone (eds.), Proceedings of the 32nd Annual Conference of the Cognitive Science Society. Cognitive Science Society.
  • Epistemological Foundations for Neuroeconomics.Elise Payzan & Sacha Bourgeois-Gironde - unknown
    Neuroeconomics is an emerging field crossing neuroscientific data, the use of brain-imaging tools, experimental and behavioral economics, and an attempt at a better understanding of the cognitive assumptions that underlie theoretical predictive economic models. In this paper the authors try two things: 1) To assess the epistemological biases that affect Neuroeconomics as it is currently done. A number of significant experiments are discussed in that perspective. 2) To imagine an original way - apart from what is already being done - (...)
     
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