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数学天才儿童的认知神经特征及教育建议
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作者 乔新虹 毕佳 周加仙 《教育生物学杂志》 2023年第1期42-47,共6页
数学天才儿童是指那些在数学学科上具有卓越能力并且表现出色的有天赋的儿童。与普通儿童相比,数学天才儿童的大脑右半球更活跃,这使得他们的认知能力更强,因为右半球在几何和视觉空间分析方面占主导地位,并且高度参与数学推理和创造力... 数学天才儿童是指那些在数学学科上具有卓越能力并且表现出色的有天赋的儿童。与普通儿童相比,数学天才儿童的大脑右半球更活跃,这使得他们的认知能力更强,因为右半球在几何和视觉空间分析方面占主导地位,并且高度参与数学推理和创造力的加工;大脑两个半球间的相互作用增强,因此不需要付出过高的加工成本,就能高效地加工信息,使得个体能更快、更准确地完成数学任务;额顶网络及其双侧加工机制的增强使天才儿童能快速而高效地加工和整合来自额叶和顶叶及其左右半球的各种信息,使得他们在加工数学信息上的速度和准确度都要远远高于普通儿童,同时额顶网络不仅与数学的高阶推理能力有关,也与创造性思维能力有关,因此数学天才儿童在数学逻辑推理以及创造性解题过程中表现突出。教育工作者可以基于这些认知神经特征识别数学天才儿童,并为他们设计相应的课程和教学策略。 展开更多
关键词 数学天才儿童 额顶网络 认知神经特征 教育建议
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Sensorimotor dysfunctions as primary features of autism spectrum disorders 被引量:7
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作者 Matthew W.MOSCONI John A.SWEENEY 《Science China(Life Sciences)》 SCIE CAS CSCD 2015年第10期1016-1023,共8页
Motor impairments in autism spectrum disorders(ASD) have received far less research attention than core social- communication and cognitive features. Yet, behavioral, neurophysiological, neuroimaging and histopatholog... Motor impairments in autism spectrum disorders(ASD) have received far less research attention than core social- communication and cognitive features. Yet, behavioral, neurophysiological, neuroimaging and histopathological studies have documented abnormal motor system development in the majority of individuals with ASD suggesting that these deficits may be primary to the disorder. There are several unique advantages to studying motor development in ASD. First, the neurophysiological substrates of motor skills have been well-characterized via animal and human lesion studies. Second, many of the single-gene disorders associated with ASD also are characterized by motor dysfunctions. Third, recent evidence suggests that the onset of motor dysfunctions may precede the emergence of social and communication deficits during the first year of life in ASD. Motor deficits documented in ASD indicate disruptions throughout the neuroaxis affecting cortex, striatum, the cerebellum and brainstem. Questions remain regarding the timing and development of motor system alterations in ASD, their association with defining clinical features, and their potential for parsing heterogeneity in ASD. Pursuing these questions through neurobiologically informed translational research holds great promise for identifying gene-brain pathways associated with ASD. 展开更多
关键词 AUTISM MOTOR CEREBELLUM DYSPRAXIA OCULOMOTOR
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