心理学
教育神经科学
发展认知神经科学
认知
诵读困难
心理干预
心态
教育心理学
认知神经科学
阅读(过程)
认知科学
认知心理学
神经科学
发展心理学
教育理论
高等教育
哲学
认识论
精神科
政治学
法学
作者
Frances Hoferichter,Diana Raufelder
摘要
Abstract Background and Aims Educational neuroscience has emerged as an interdisciplinary field aimed at elucidating the neurobiological underpinnings of learning and educational outcomes. By synthesizing findings from diverse research endeavours, this Editorial aims to delineate the intricate interplay between neural processes and educational experiences, shedding light on the factors that shape cognitive development and learning trajectories in children. Results This Editorial highlights significant advancements, spanning investigations into neural mechanisms, cognitive development and educational interventions on the basis of four exemplary topics and their effects on academic learning and achievement: student's academic self‐concept, (cyber‐)bullying, reading skills/dyslexia and a growth mindset intervention. Summaries of the four empirical contributions in this special issue are presented and discussed in relation to how they provide insight into the dynamic interplay between neural mechanisms and environmental influences, underscoring the role of early experiences in sculpting brain development and shaping educational outcomes. Furthermore, the integration of neuroscientific techniques (e.g., fMRI, eye‐tracking) with educational research methodologies has provided novel insights into the neural correlates of learning processes, executive functions and socio‐emotional development during childhood. Conclusions In conclusion, the pivotal role of Educational Neuroscience in bridging the gap between neuroscience and education is highlighted. By elucidating the neurobiological foundations of learning, this interdisciplinary field offers valuable insights for informing evidence‐based educational practices and interventions tailored to individual learning profiles. Moving forward, continued collaboration between researchers, educators and policymakers is essential to harnessing the full potential of Educational Neuroscience in promoting cognitive growth and academic success across diverse learner populations.
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