How to optimize knowledge construction in the brain
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[1] C S Ferreira,et al. Retrieval aids the creation of a generalised memory trace and strengthens episode-unique information , 2019, NeuroImage.
[2] L. Davachi,et al. Awake Reactivation of Prior Experiences Consolidates Memories and Biases Cognition , 2019, Trends in Cognitive Sciences.
[3] Itamar Lerner,et al. Sleep and the extraction of hidden regularities: A systematic review and the importance of temporal rules. , 2019, Sleep medicine reviews.
[4] Gui Xue,et al. Spaced Learning Enhances Episodic Memory by Increasing Neural Pattern Similarity Across Repetitions , 2019, The Journal of Neuroscience.
[5] Simon Hanslmayr,et al. Modulating Human Memory via Entrainment of Brain Oscillations , 2019, Trends in Neurosciences.
[6] D. Calnan,et al. Deep Brain Stimulation for Memory Modulation: A New Frontier. , 2019, World neurosurgery.
[7] J. Williamson,et al. The art of memory , 2019, The Lancet Neurology.
[8] Preston P. Thakral,et al. Adaptive constructive processes: An episodic specificity induction impacts false recall in the Deese-Roediger-McDermott paradigm. , 2019, Journal of experimental psychology. General.
[9] Yee Lee Shing,et al. A boon and a bane: Comparing the effects of prior knowledge on memory across the lifespan. , 2019, Developmental psychology.
[10] R. Henson,et al. Knowledge Is Power: Prior Knowledge Aids Memory for Both Congruent and Incongruent Events, but in Different Ways , 2018, Journal of experimental psychology. General.
[11] P. Bays,et al. Flexible updating of dynamic knowledge structures , 2018, Scientific Reports.
[12] Thackery I. Brown,et al. Learned Spatial Schemas and Prospective Hippocampal Activity Support Navigation After One-Shot Learning , 2018, Front. Hum. Neurosci..
[13] Guillén Fernández,et al. Memory, Novelty and Prior Knowledge , 2018, Trends in Neurosciences.
[14] N. Cellini,et al. Shaping memory consolidation via targeted memory reactivation during sleep , 2018, Annals of the New York Academy of Sciences.
[15] Lori Lockyer,et al. Understanding Difficulties and Resulting Confusion in Learning: An Integrative Review , 2018, Front. Educ..
[16] M. Meeter,et al. Integrating educational knowledge: reactivation of prior knowledge during educational learning enhances memory integration , 2018, npj Science of Learning.
[17] Stephen Wee Hun Lim,et al. The learning benefits of teaching: A retrieval practice hypothesis , 2018 .
[18] Henry L. Roediger,et al. Reflections on the Resurgence of Interest in the Testing Effect , 2018, Perspectives on psychological science : a journal of the Association for Psychological Science.
[19] Morris Moscovitch,et al. The effect of prior knowledge on post-encoding brain connectivity and its relation to subsequent memory , 2018, NeuroImage.
[20] C. Madan,et al. Teaching the science of learning , 2018, Cognitive research: principles and implications.
[21] A. Mendelsohn,et al. Autobiographical memory: From experiences to brain representations , 2017, Neuropsychologia.
[22] L. Davachi,et al. Brief targeted memory reactivation during the awake state enhances memory stability and benefits the weakest memories , 2017, bioRxiv.
[23] L. Nadel,et al. Viewpoints: how the hippocampus contributes to memory, navigation and cognition , 2017, Nature Neuroscience.
[24] Lila Davachi,et al. Consolidation Promotes the Emergence of Representational Overlap in the Hippocampus and Medial Prefrontal Cortex , 2017, Neuron.
[25] Asaf Gilboa,et al. Neurobiology of Schemas and Schema-Mediated Memory , 2017, Trends in Cognitive Sciences.
[26] Catarina S. Ferreira,et al. Retrieval as a Fast Route to Memory Consolidation , 2017, Trends in Cognitive Sciences.
[27] K. Nader,et al. An Update on Memory Reconsolidation Updating , 2017, Trends in Cognitive Sciences.
[28] Blake A. Richards,et al. The Persistence and Transience of Memory , 2017, Neuron.
[29] Boris N. Konrad,et al. Mnemonic Training Reshapes Brain Networks to Support Superior Memory , 2017, Neuron.
[30] R. Morris,et al. Transient medial prefrontal perturbation reduces false memory formation , 2017, Cortex.
[31] M. Rhodes,et al. Flipped Classrooms: a Review of Key Ideas and Recommendations for Practice , 2016, Educational Psychology Review.
[32] E. Loftus. Eavesdropping on Memory. , 2017, Annual review of psychology.
[33] Indira C. Turney,et al. What's the gist? The influence of schemas on the neural correlates underlying true and false memories , 2016, Neuropsychologia.
[34] Arne D. Ekstrom,et al. A network approach for modulating memory processes via direct and indirect brain stimulation: Toward a causal approach for the neural basis of memory , 2016, Neurobiology of Learning and Memory.
[35] Donna Rose Addis,et al. Episodic specificity induction impacts activity in a core brain network during construction of imagined future experiences , 2016, Proceedings of the National Academy of Sciences.
[36] Asaf Gilboa,et al. A boost of confidence: The role of the ventromedial prefrontal cortex in memory, decision-making, and schemas , 2016, Neuropsychologia.
[37] M. E. Pedreira,et al. The fate of memory: Reconsolidation and the case of Prediction Error , 2016, Neuroscience & Biobehavioral Reviews.
[38] Daniel L Schacter,et al. Remembering the past and imagining the future: Identifying and enhancing the contribution of episodic memory , 2016, Memory studies.
[39] Eliane Segers,et al. Neurocognitive mechanisms of the “testing effect”: A review , 2016, Trends in Neuroscience and Education.
[40] Anna Abraham,et al. Commentary: Creativity and Memory: Effects of an Episodic-Specificity Induction on Divergent Thinking , 2016, Front. Psychol..
[41] Daniel L. Schacter,et al. The Quarterly Journal of Experimental Psychology Remembering the past and Imagining the Future: Selective Effects of an Episodic Specificity Induction on Detail Generation , 2022 .
[42] Nancy A. Dennis,et al. Event-related fMRI studies of false memory: An Activation Likelihood Estimation meta-analysis , 2016, Neuropsychologia.
[43] Paul Smolen,et al. The right time to learn: mechanisms and optimization of spaced learning , 2016, Nature Reviews Neuroscience.
[44] Brice A. Kuhl,et al. Predicting the integration of overlapping memories by decoding mnemonic processing states during learning , 2016, NeuroImage.
[45] Daniel Tranel,et al. Investigating the Neural Correlates of Schemas: Ventromedial Prefrontal Cortex Is Necessary for Normal Schematic Influence on Memory , 2015, The Journal of Neuroscience.
[46] Yadin Dudai,et al. The Consolidation and Transformation of Memory , 2015, Neuron.
[47] Margaret L. Schlichting,et al. Learning-related representational changes reveal dissociable integration and separation signatures in the hippocampus and prefrontal cortex , 2015, Nature Communications.
[48] M. Meeter,et al. Novelty's effect on memory encoding. , 2015, Acta psychologica.
[49] S. Diekelmann,et al. Sleep smart—optimizing sleep for declarative learning and memory , 2015, Front. Psychol..
[50] Margaret L. Schlichting,et al. Memory integration: neural mechanisms and implications for behavior , 2015, Current Opinion in Behavioral Sciences.
[51] J. Kroll,et al. Desirable Difficulties in Vocabulary Learning. , 2015, The American journal of psychology.
[52] Daniel L Schacter,et al. Ventromedial prefrontal cortex supports affective future simulation by integrating distributed knowledge , 2014, Proceedings of the National Academy of Sciences.
[53] Margaret L. Schlichting,et al. Memory reactivation during rest supports upcoming learning of related content , 2014, Proceedings of the National Academy of Sciences.
[54] Morris Moscovitch,et al. Schema Representation in Patients with Ventromedial PFC Lesions , 2014, The Journal of Neuroscience.
[55] Martijn Meeter,et al. Exploring a novel environment improves motivation and promotes recall of words , 2014, Front. Psychol..
[56] Daniel Tranel,et al. False Recall Is Reduced by Damage to the Ventromedial Prefrontal Cortex: Implications for Understanding the Neural Correlates of Schematic Memory , 2014, The Journal of Neuroscience.
[57] Mark A McDaniel,et al. Both multiple-choice and short-answer quizzes enhance later exam performance in middle and high school classes. , 2014, Journal of experimental psychology. Applied.
[58] Vanessa E. Ghosh,et al. What is a memory schema? A historical perspective on current neuroscience literature , 2014, Neuropsychologia.
[59] Daniel L. Schacter,et al. Neural mechanisms of reactivation-induced updating that enhance and distort memory , 2013, Proceedings of the National Academy of Sciences.
[60] Yee Lee Shing,et al. The Influence of Prior Knowledge on Memory: A Developmental Cognitive Neuroscience Perspective , 2013, Front. Behav. Neurosci..
[61] Hermann Ebbinghaus (1885). Memory: A Contribution to Experimental Psychology , 2013, Annals of Neurosciences.
[62] H. Eichenbaum,et al. Interplay of Hippocampus and Prefrontal Cortex in Memory , 2013, Current Biology.
[63] Therese van Amelsvoort,et al. The Detection of Novelty Relies on Dopaminergic Signaling: Evidence from Apomorphine's Impact on the Novelty N2 , 2013, PloS one.
[64] A. Hupbach,et al. Neural Context Reinstatement Predicts Memory Misattribution , 2013, The Journal of Neuroscience.
[65] E. Bjork,et al. Why interleaving enhances inductive learning: The roles of discrimination and retrieval , 2013, Memory & cognition.
[66] G. Buzsáki,et al. Memory, navigation and theta rhythm in the hippocampal-entorhinal system , 2013, Nature Neuroscience.
[67] D. Schacter. Adaptive constructive processes and the future of memory. , 2012, The American psychologist.
[68] Guillén Fernández,et al. Sleep Supports Selective Retention of Associative Memories Based on Relevance for Future Utilization , 2012, PloS one.
[69] Marijn C. W. Kroes,et al. Dynamic neural systems enable adaptive, flexible memories , 2012, Neuroscience & Biobehavioral Reviews.
[70] A. Hupbach,et al. Memory formation, consolidation and transformation , 2012, Neuroscience & Biobehavioral Reviews.
[71] Y. Dudai. The restless engram: consolidations never end. , 2012, Annual review of neuroscience.
[72] Silvia A. Bunge,et al. Neural changes underlying the development of episodic memory during middle childhood , 2012, Developmental Cognitive Neuroscience.
[73] R. Henson,et al. How schema and novelty augment memory formation , 2012, Trends in Neurosciences.
[74] Dorothy Tse,et al. Schema-Dependent Gene Activation and Memory Encoding in Neocortex , 2011, Science.
[75] P. Lewis,et al. Overlapping memory replay during sleep builds cognitive schemata , 2011, Trends in Cognitive Sciences.
[76] H. Eichenbaum,et al. Consolidation and Reconsolidation: Two Lives of Memories? , 2011, Neuron.
[77] Brice A. Kuhl,et al. Fidelity of neural reactivation reveals competition between memories , 2011, Proceedings of the National Academy of Sciences.
[78] Richard N Henson,et al. Predictive, interactive multiple memory systems , 2010, Hippocampus.
[79] G. Winocur,et al. Memory formation and long-term retention in humans and animals: Convergence towards a transformation account of hippocampal–neocortical interactions , 2010, Neuropsychologia.
[80] Guillén Fernández,et al. Persistent schema-dependent hippocampal-neocortical connectivity during memory encoding and postencoding rest in humans , 2010, Proceedings of the National Academy of Sciences.
[81] J. Born,et al. The memory function of sleep , 2010, Nature Reviews Neuroscience.
[82] Nicholas A. Ketz,et al. Enhanced Brain Correlations during Rest Are Related to Memory for Recent Experiences , 2010, Neuron.
[83] Joel L. Voss,et al. Strengthening Individual Memories by Reactivating Them During Sleep , 2009, Science.
[84] E. Robertson,et al. Resting state networks and memory consolidation , 2009, Communicative & integrative biology.
[85] J. C. Gray,et al. Event congruency enhances episodic memory encoding through semantic elaboration and relational binding. , 2009, Cerebral cortex.
[86] Robert Stickgold,et al. Sleep Preferentially Enhances Memory for Emotional Components of Scenes , 2008, Psychological science.
[87] Hans-Jochen Heinze,et al. Novel Scenes Improve Recollection and Recall of Words , 2008, Journal of Cognitive Neuroscience.
[88] D. Schacter,et al. Remembering the past to imagine the future: the prospective brain , 2007, Nature Reviews Neuroscience.
[89] D. Hassabis,et al. Deconstructing episodic memory with construction , 2007, Trends in Cognitive Sciences.
[90] Dorothy Tse,et al. References and Notes Supporting Online Material Materials and Methods Figs. S1 to S5 Tables S1 to S3 Electron Impact (ei) Mass Spectra Chemical Ionization (ci) Mass Spectra References Schemas and Memory Consolidation Research Articles Research Articles Research Articles Research Articles , 2022 .
[91] L. Squire,et al. The neuroscience of remote memory , 2007, Current Opinion in Neurobiology.
[92] Stefanie J. Sharman,et al. False claims about false memory research , 2007, Consciousness and Cognition.
[93] A. Hupbach,et al. Reconsolidation of episodic memories: a subtle reminder triggers integration of new information. , 2007, Learning & memory.
[94] Wim Van Den Noortgate,et al. Students’ misconceptions of statistical inference: A review of the empirical evidence from research on statistics education , 2007 .
[95] R. Morris,et al. Elements of a neurobiological theory of hippocampal function: the role of synaptic plasticity, synaptic tagging and schemas , 2006, The European journal of neuroscience.
[96] G. Winocur,et al. The cognitive neuroscience of remote episodic, semantic and spatial memory , 2006, Current Opinion in Neurobiology.
[97] E. Loftus. Planting misinformation in the human mind: a 30-year investigation of the malleability of memory. , 2005, Learning & memory.
[98] Effie Maclellan,et al. Conceptual Learning: The Priority for Higher Education , 2005 .
[99] Martijn Meeter,et al. Consolidation of long-term memory: evidence and alternatives. , 2004, Psychological bulletin.
[100] J. Born,et al. Sleep inspires insight , 2004, Nature.
[101] W. K. Cullen,et al. Dopamine-dependent facilitation of LTP induction in hippocampal CA1 by exposure to spatial novelty , 2003, Nature Neuroscience.
[102] E. Maguire,et al. Routes to remembering: the brains behind superior memory , 2003, Nature Neuroscience.
[103] K. Paller,et al. Observing the transformation of experience into memory , 2002, Trends in Cognitive Sciences.
[104] R. Buckner,et al. THE COGNITIVE NEUROSCIENCE OF REMEMBERING , 2001 .
[105] E. Clark,et al. Is perceptual salience needed in explanations of the isolation effect? , 2000, Journal of experimental psychology. Learning, memory, and cognition.
[106] Rajesh P. N. Rao,et al. Predictive coding in the visual cortex: a functional interpretation of some extra-classical receptive-field effects. , 1999 .
[107] E. Loftus,et al. The Formation of False Memories , 1995 .
[108] K. McDermott,et al. Creating false memories: Remembering words not presented in lists. , 1995 .
[109] R. Fisher,et al. Memory-Enhancing Techniques for Investigative Interviewing: The Cognitive Interview , 1992 .
[110] Robert A. Bjork,et al. Learning from tests: Effects of spacing , 1977 .
[111] H. V. Restorff. Über die Wirkung von Bereichsbildungen im Spurenfeld , 1933 .
[112] F. Bartlett,et al. Remembering: A Study in Experimental and Social Psychology , 1932 .
[113] R. J. B.. The Child's Conception of the World , 1929, Nature.