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Yasuki Noguchi – npj Science of Learning, 2024
When we memorize multiple words simultaneously, semantic relatedness among those words assists memory. For example, the information about "apple", "banana," and "orange" will be connected via a common concept of "fruits" and become easy to retain and recall. Neural mechanisms underlying this semantic…
Descriptors: Memory, Semantics, Short Term Memory, Brain
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Susanne Dyck; Christian Klaes – npj Science of Learning, 2025
New information that is compatible with pre-existing knowledge can be learned faster. Such schema memory effect has been reported in declarative memory and in explicit motor sequence learning (MSL). Here, we investigated if sequences of key presses that were compatible to previously trained ones, could be learned faster in an implicit MSL task.…
Descriptors: Learning Processes, Psychomotor Skills, Sequential Learning, Memory
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Danni Chen; Tao Xia; Ziqing Yao; Lingqi Zhang; Xiaoqing Hu – npj Science of Learning, 2024
People often change their evaluations upon learning about their peers' evaluations, i.e., social learning. Given sleep's vital role in consolidating daytime experiences, sleep may facilitate social learning, thereby further changing people's evaluations. Combining a social learning task and the sleep-based targeted memory reactivation technique,…
Descriptors: Sleep, Socialization, Evaluation, Memory
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Nicole E. Keller; Carola Salvi; Emily K. Leiker; Matthias J. Gruber; Joseph E. Dunsmoor – npj Science of Learning, 2024
Curiosity can be a powerful motivator to learn and retain new information. Evidence shows that high states of curiosity elicited by a specific source (i.e., a trivia question) can promote memory for incidental stimuli (non-target) presented close in time. The spreading effect of curiosity states on memory for other information has potential for…
Descriptors: Personality Traits, Memory, Questioning Techniques, Stimuli
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Beverly A. Wright; Ruijing Ning – npj Science of Learning, 2024
In many non-human species, learning retention decreases temporarily following training. This has led to the suggestion that these lapses reflect a fundamental component of memory formation. If so, transient memory lapses should also be prevalent in humans, and should occur for all types of learning. In line with these predictions, we report two…
Descriptors: Memory, Retention (Psychology), Training, Discrimination Learning
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Yue Li; Mikael Johansson; Andrey R. Nikolaev – npj Science of Learning, 2025
Contextual shifts are crucial for episodic memory, setting event boundaries during event segmentation. While lab research provides insights, it often lacks the complexity of real-world experiences. We addressed this gap by examining perceptual and conceptual boundaries using virtual reality (VR). Participants acted as salespeople, interacting with…
Descriptors: Memory, Computer Simulation, Context Effect, Adults
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Julia Carbone; Susanne Diekelmann – npj Science of Learning, 2024
Targeted Memory Reactivation (TMR) is a noninvasive tool to manipulate memory consolidation during sleep. TMR builds on the brain's natural processes of memory reactivation during sleep and aims to facilitate or bias these processes in a certain direction. The basis of this technique is the association of learning content with sensory cues, such…
Descriptors: Memory, Sleep, Neurological Organization, Brain
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Limor Shtoots; Asher Nadler; Roni Partouche; Dorin Sharir; Aryeh Rothstein; Liran Shati; Daniel A. Levy – npj Science of Learning, 2024
Evidence implicating theta rhythms in declarative memory encoding and retrieval, together with the notion that both retrieval and consolidation involve memory reinstatement or replay, suggests that post-learning theta rhythm modulation can promote early consolidation of newly formed memories. Building on earlier work employing theta neurofeedback,…
Descriptors: Memory, Brain Hemisphere Functions, Stimulation, Cognitive Processes
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Yafeng Pan; Ning Hao; Ning Liu; Yijie Zhao; Xiaojun Cheng; Yixuan Ku; Yi Hu – npj Science of Learning, 2023
It is said that our species use mnemonics -- that "magic of memorization" -- to engrave an enormous amount of information in the brain. Yet, it is unclear how mnemonics affect memory and what the neural underpinnings are. In this electroencephalography study, we examined the hypotheses whether mnemonic training improved…
Descriptors: Mnemonics, Cognitive Processes, Training, Memory
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Nathan W. Whitmore; Erika M. Yamazaki; Ken A. Paller – npj Science of Learning, 2024
When memories are reactivated during sleep, they are potentially transformed and strengthened. However, disturbed sleep may make this process ineffective. In a prior study, memories formed shortly before sleep were weakened by auditory stimulation when that stimulation provoked memory reactivation while also disrupting sleep -- a procedure known…
Descriptors: Memory, Sleep, Retention (Psychology), Recall (Psychology)
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Kenny Yu; Wolf Vanpaemel; Francis Tuerlinckx; Jonas Zaman – npj Science of Learning, 2024
Perception and perceptual memory play crucial roles in fear generalization, yet their dynamic interaction remains understudied. This research (N = 80) explored their relationship through a classical differential conditioning experiment. Results revealed that while fear context perception fluctuates over time with a drift effect, perceptual memory…
Descriptors: Generalizability Theory, Generalization, Fear, Learning Processes
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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
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Francesco Pupillo; Javier Ortiz-Tudela; Rasmus Bruckner; Yee Lee Shing – npj Science of Learning, 2023
Expectations can lead to prediction errors of varying degrees depending on the extent to which the information encountered in the environment conforms with prior knowledge. While there is strong evidence on the computationally specific effects of such prediction errors on learning, relatively less evidence is available regarding their effects on…
Descriptors: Prediction, Error Patterns, Memory, Cognitive Processes
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Taewon Kim; Hakjoo Kim; Benjamin A. Philip; David L. Wright – npj Science of Learning, 2024
The primary motor cortex (M1) is crucial for motor skill learning. We examined its role in interleaved practice, which enhances retention (vs. repetitive practice) through M1-dependent consolidation. We hypothesized that cathodal transcranial direct current stimulation (ctDCS) to M1 would disrupt retention. We found that ctDCS reduced retention…
Descriptors: Perceptual Motor Learning, Brain Hemisphere Functions, Cognitive Processes, Retention (Psychology)
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Peter Vavra; Leo Sokolovic; Emanuele Porcu; Pablo Ripollés; Antoni Rodriguez-Fornells; Toemme Noesselt – npj Science of Learning, 2023
Incentives can decrease performance by undermining intrinsic motivation. How such an interplay of external reinforcers and internal self-regulation influences memory processes, however, is less known. Here, we investigated their interaction on memory performance while learning the meaning of new-words from their context. Specifically, participants…
Descriptors: Self Management, Feedback (Response), Memory, Incentives
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