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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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Gloria G. Parras; José M. Delgado-García; Juan Carlos López-Ramos; Agnès Gruart; Rocío Leal-Campanario – npj Science of Learning, 2024
Learning is a functional state of the brain that should be understood as a continuous process, rather than being restricted to the very moment of its acquisition, storage, or retrieval. The cerebellum operates by comparing predicted states with actual states, learning from errors, and updating its internal representation to minimize errors. In…
Descriptors: Brain Hemisphere Functions, Animals, Responses, Classical Conditioning
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Wenbin Zhou; Wenya Nan; Kaiwen Xiong; Yixuan Ku – npj Science of Learning, 2024
Neurofeedback (NF) training is a closed-loop brain training in which participants learn to regulate their neural activation. NF training of alpha (8-12 Hz) activity has been reported to enhance working memory capacity, but whether it affects the precision in working memory has not yet been explored. Moreover, whether NF training distinctively…
Descriptors: Participation, Short Term Memory, Visual Learning, Visual Stimuli
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Ruxandra I. Tivadar; Benedetta Franceschiello; Astrid Minier; Micah M. Murray – npj Science of Learning, 2023
Learning spatial layouts and navigating through them rely not simply on sight but rather on multisensory processes, including touch. Digital haptics based on ultrasounds are effective for creating and manipulating mental images of individual objects in sighted and visually impaired participants. Here, we tested if this extends to scenes and…
Descriptors: Visual Impairments, Manipulative Materials, Stimuli, Biofeedback
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Yufeng Ke; Shuang Liu; Long Chen; Xiashuang Wang; Dong Ming – npj Science of Learning, 2023
The neural basis for long-term behavioral improvements resulting from multi-session transcranial direct current stimulation (tDCS) combined with working memory training (WMT) remains unclear. In this study, we used task-related electroencephalography (EEG) measures to investigate the lasting neurophysiological effects of anodal high-definition…
Descriptors: Short Term Memory, Biofeedback, Stimulation, Brain
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Mohan W. Gupta; Timothy C. Rickard – npj Science of Learning, 2022
The prevailing hypothesis for observed post-rest motor reaction time improvements is offline consolidation. In the present study, we present evidence for an alternate account involving the accrual and dissipation of reactive inhibition. Four groups of participants (N = 159) performed a finger-tapping task involving either massed (30 s per trial)…
Descriptors: Time, Psychomotor Skills, Productivity, Motor Reactions
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Jingjing Chen; Penghao Qian; Xinqiao Gao; Baosong Li; Yu Zhang; Dan Zhang – npj Science of Learning, 2023
The classroom is the primary site for learning. A vital feature of classroom learning is the division of educational content into various disciplines. While disciplinary differences could substantially influence the learning process toward success, little is known about the neural mechanism underlying successful disciplinary learning. In the…
Descriptors: Intellectual Disciplines, Brain Hemisphere Functions, Biofeedback, High School Students