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Andreas B. Eder; Vanessa Mitschke – npj Science of Learning, 2025
This study investigated outcome-selective Pavlovian-to-instrumental transfer (PIT) in fight-or-flight decision making. Participants learned to attack or retreat from monsters (instrumental phase) and to associate environments with specific monsters without responding (Pavlovian phase). In the transfer phase, they chose responses to unseen monsters…
Descriptors: Conditioning, Emotional Response, Decision Making, Stimuli
Zhijun Liao; Xiya Ao; Yulu Sun; Manli Zhang; Xiangzhi Meng – npj Science of Learning, 2024
Applying 10 Hz ([alpha]-rate) sensory stimulation, not 5 Hz ([theta]-rate), prior to introducing novel speech-print pairs can reset the phase of [theta] oscillations and enhance associative learning. This rapid gain indicates coordinated mechanisms to regulate attentional/cognitive resources ([alpha] oscillations) and facilitate memory storage…
Descriptors: Sensory Experience, Stimulation, Associative Learning, Attention Control
Elsa Raynal; Kate Schipper; Catherine Brandner; Paolo Ruggeri; Jérôme Barral – npj Science of Learning, 2024
Associative learning abilities vary considerably among individuals, with attentional processes suggested to play a role in these variations. However, the relationship between attentional processes and individual differences in associative learning remains unclear, and whether these variations reflect in event-related potentials (ERPs) is unknown.…
Descriptors: Associative Learning, Attention, Cognitive Processes, Individual Differences
Behnam Karami; Caspar M. Schwiedrzik – npj Science of Learning, 2024
Visual objects are often defined by multiple features. Therefore, learning novel objects entails learning feature conjunctions. Visual cortex is organized into distinct anatomical compartments, each of which is devoted to processing a single feature. A prime example are neurons purely selective to color and orientation, respectively. However,…
Descriptors: Visual Perception, Visual Learning, Novelty (Stimulus Dimension), Brain Hemisphere Functions
Cong Xie; Shuangfei Zhang; Xinuo Qiao; Ning Hao – npj Science of Learning, 2024
This study investigated whether transcranial direct current stimulation (tDCS) targeting the inferior frontal gyrus (IFG) can alter the thinking process and neural basis of creativity. Participants' performance on the compound remote associates (CRA) task was analyzed considering the semantic features of each trial after receiving different tDCS…
Descriptors: Stimulation, Brain Hemisphere Functions, Semantics, Comparative Analysis
Simone A. Luchini; James C. Kaufman; Benjamin Goecke; Oliver Wilhelm; Yoed N. Kenett; Daisy Lei; Mathias Benedek; Janet G. van Hell; Roger E. Beaty – npj Science of Learning, 2025
Creativity is a key 21st-century skill and a consistent predictor of academic learning outcomes. Despite decades of research on creativity and learning, little is known about the cognitive mechanisms underlying their relationship. In two studies, we examined whether creativity supports associative learning through associative thinking--the ability…
Descriptors: Creativity, 21st Century Skills, Associative Learning, Association (Psychology)
Jai S. Polepalli; Helen Gooch; Pankaj Sah – npj Science of Learning, 2020
The basolateral amygdala (BLA) is a temporal lobe structure that contributes to a host of behaviors. In particular, it is a central player in learning about aversive events and thus assigning emotional valence to sensory events. It is a cortical-like structure and contains glutamatergic pyramidal neurons and GABAergic interneurons. It is divided…
Descriptors: Brain Hemisphere Functions, Cytology, Stoichiometry, Diagnostic Tests
Jessica E. Bartley; Michael C. Riedel; Taylor Salo; Emily R. Boeving; Katherine L. Bottenhorn; Elsa I. Bravo; Rosalie Odean; Alina Nazareth; Robert W. Laird; Matthew T. Sutherland; Shannon M. Pruden; Eric Brewe; Angela R. Laird – npj Science of Learning, 2019
Understanding how students learn is crucial for helping them succeed. We examined brain function in 107 undergraduate students during a task known to be challenging for many students--physics problem solving--to characterize the underlying neural mechanisms and determine how these support comprehension and proficiency. Further, we applied module…
Descriptors: Brain, Cognitive Processes, Science Process Skills, Abstract Reasoning