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Fynn R. Dobler; Malte R. Henningsen-Schomers; Friedemann Pulvermüller – Language Learning, 2024
Concrete symbols (e.g., "sun," "run") can be learned in the context of objects and actions, thereby grounding their meaning in the world. However, it is controversial whether a comparable avenue to semantic learning exists for abstract symbols (e.g., "democracy"). When we simulated the putative brain mechanisms of…
Descriptors: Semantics, Brain Hemisphere Functions, Concept Formation, Abstract Reasoning
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Xiaojing Lv; Yujie Jia; Thomas M. Brinthaupt; Xuezhu Ren – Journal of Educational Psychology, 2024
Despite the recognized importance of addressing belief bias in critical thinking, little is known about the neural activity underlying belief-bias reasoning and its connection to critical thinking. The study utilized event-related potentials (ERPs) to examine the neural responses during belief-bias reasoning and explored the extent to which these…
Descriptors: Brain, Brain Hemisphere Functions, Beliefs, Bias
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Aumont, Étienne; Blanchette, Caroll-Ann; Bohbot, Veronique D.; West, Greg L. – Learning & Memory, 2019
When people navigate, they use strategies dependent on one of two memory systems. The hippocampus-based spatial strategy consists of using multiple landmarks to create a cognitive map of the environment. In contrast, the caudate nucleus-based response strategy is based on the memorization of a series of turns. Importantly, response learners…
Descriptors: Memory, Brain Hemisphere Functions, Memorization, Navigation
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Hruska, Pam; Krigolson, Olav; Coderre, Sylvain; McLaughlin, Kevin; Cortese, Filomeno; Doig, Christopher; Beran, Tanya; Wright, Bruce; Hecker, Kent G. – Advances in Health Sciences Education, 2016
Clinical reasoning is dependent upon working memory (WM). More precisely, during the clinical reasoning process stored information within long-term memory is brought into WM to facilitate the internal deliberation that affords a clinician the ability to reason through a case. In the present study, we examined the relationship between clinical…
Descriptors: Short Term Memory, Abstract Reasoning, Expertise, Medicine
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Xiao, Xin; Zhao, Di; Zhang, Qin; Guo, Chun-yan – Brain and Language, 2012
The current study used the directed forgetting paradigm in implicit and explicit memory to investigate the concreteness effect. Event-related potentials (ERPs) were recorded to explore the neural basis of this phenomenon. The behavioral results showed a clear concreteness effect in both implicit and explicit memory tests; participants responded…
Descriptors: Memory, Responses, Cognitive Processes, Brain Hemisphere Functions
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Ryan, Jennifer D.; Moses, Sandra N.; Villate, Christina – Neuropsychologia, 2009
The ability to perform relational proposition-based reasoning was assessed in younger and older adults using the transitive inference task in which subjects learned a series of premise pairs (A greater than B, B greater than C, C greater than D, D greater than E, E greater than F) and were asked to make inference judgments (B?D, B?E, C?E).…
Descriptors: Integrity, Children, Inferences, Aging (Individuals)
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Posner, Michael I.; And Others – Science, 1988
Hypothesizes that the human brain localizes mental operations which are integrated in the performance of cognitive tasks such as reading. Provides support of this hypothesis from studies in neural imaging, mental imagery, timing, and memory. (RT)
Descriptors: Abstract Reasoning, Brain Hemisphere Functions, Cognitive Mapping, Cognitive Processes
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Kosslyn, Stephen M. – Science, 1988
Illustrates how one can discover structure in mental abilities where none was obvious. Reports that two classes of processes are used to form images. Indicates that imagery is carried out by multiple processes, not all of which are implemented equally effectively in the same part of the brain. (RT)
Descriptors: Abstract Reasoning, Brain Hemisphere Functions, Cognitive Development, Cognitive Mapping