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Gallagher, Shaun – Educational Theory, 2018
On an enactivist conception of cognition, the unit of explanation is not just the brain, not just the body, and not just the environment, but the body--brain--environment understood as a dynamically coupled structure or gestalt. On this view, referencing Viktor von Weizsäcker's metaphor of the gestalt circle (Gestaltkreis), the brain is not in the…
Descriptors: Learning Processes, Brain, Human Body, Interaction
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Riek, Stephan; Hinder, Mark R.; Carson, Richard G. – Neuropsychologia, 2012
Human motor behaviour is continually modified on the basis of errors between desired and actual movement outcomes. It is emerging that the role played by the primary motor cortex (M1) in this process is contingent upon a variety of factors, including the nature of the task being performed, and the stage of learning. Here we used repetitive TMS to…
Descriptors: Feedback (Response), Stimulation, Faculty Development, Psychomotor Skills
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Wilkinson, Leonora; Teo, James T.; Obeso, Ignacio; Rothwell, John C.; Jahanshahi, Marjan – Journal of Cognitive Neuroscience, 2010
Theta burst transcranial magnetic stimulation (TBS) is considered to produce plastic changes in human motor cortex. Here, we examined the inhibitory and excitatory effects of TBS on implicit sequence learning using a probabilistic serial reaction time paradigm. We investigated the involvement of several cortical regions associated with implicit…
Descriptors: Stimulation, Reaction Time, Matched Groups, Cognitive Processes
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Muller, Melissa D.; Fountain, Stephen B. – Learning and Motivation, 2010
Three experiments examined the processes mediating rat serial pattern learning for rule-consistent versus rule-violating pattern elements ("violation elements"). In all three experiments, rats were trained to press retractable levers in a circular array in a specific sequence for brain-stimulation reward (BSR). Experiment 1 examined the role of…
Descriptors: Animals, Cognitive Processes, Cues, Serial Ordering
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Cohen, Michael X.; Axmacher, Nikolai; Lenartz, Doris; Elger, Christian E.; Sturm, Volker; Schlaepfer, Thomas E. – Journal of Cognitive Neuroscience, 2009
The nucleus accumbens is critical for reward-guided learning and decision-making. It is thought to "gate" the flow of a diverse range of information (e.g., rewarding, aversive, and novel events) from limbic afferents to basal ganglia outputs. Gating and information encoding may be achieved via cross-frequency coupling, in which bursts of…
Descriptors: Surgery, Patients, Rewards, Decision Making
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Albrecht, Doris – Learning & Memory, 2007
It is known from studies outside the brain that upon binding to its receptor, angiotensin-(1-7) elicits the release of prostanoids and nitric oxide (NO). Cyclooxygenase (COX) is a key enzyme that converts arachidonic acid to prostaglandins. Since there are no data available so far on the role of COX-2 in the amygdala, in a first step we…
Descriptors: Stimulation, Brain, Animals, Memory
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Joels, Marian; Krugers, Harm; Wiegert, Olof – Learning & Memory, 2006
Stress facilitates memory formation, but only when the stressor is closely linked to the learning context. These effects are, at least in part, mediated by corticosteroid hormones. Here we demonstrate that corticosterone rapidly facilitates synaptic potentiation in the mouse hippocampal CA1 area when high levels of the hormone and high-frequency…
Descriptors: Anxiety, Learning Processes, Drug Use, Animal Behavior
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Villarreal, Ronald P.; Steinmetz, Joseph E. – Journal of the Experimental Analysis of Behavior, 2005
How the nervous system encodes learning and memory processes has interested researchers for 100 years. Over this span of time, a number of basic neuroscience methods has been developed to explore the relationship between learning and the brain, including brain lesion, stimulation, pharmacology, anatomy, imaging, and recording techniques. In this…
Descriptors: Brain Hemisphere Functions, Anatomy, Brain, Associative Learning