
刘晓瑾
籍贯:广东
职务:
职称:副教授
研究方向:第二语言习得神经机制、智能技术辅助外语学习、科学探究中的情绪与学习机制研究
邮箱:xiaojin.liu@bnu.edu.cn
教育教学
·本科生课程:教育心理学、发展心理学、学校心理学、生理心理学
·研究生课程:青少年心理学发展与教育、教学技能、微格教学
科学研究
主持项目:
·国家自然科学基金青年项目,VR辅助语言学习中学习者特征对学习效果的影响及其脑机制研究
·广东省哲学社会科学规划青年项目,虚拟现实技术辅助大学生第二外语学习:动机与认知负荷的影响及其神经机制研究
·广东省教育科学规划课题(高等教育专项),融入中华优秀传统文化的大学生外语VR学习系统构建和实践研究
参与项目:
·科技创新2030课题,脑发育与认知、学习能力发展规律及分化机制
·国家社会科学基金重点项目,神经科学视角下智能外语教学系统要素研究
·国家社会科学基金一般项目,不同母语背景的汉语第二语言学习脑可塑性动态MRI追踪研究
·广东省哲学社会科学规划项目,教育神经科学视阈下思维模式影响学业挫折的适应性反应研究
·教育部人文社科规划青年项目,数字媒体使用对儿童执行功能影响的脑机制研究
·广东省教育科学规划课题(高等教育专项),面向大学生心理健康教育的脑科学VR系统建构和实践研究
·广东省普通高校创新团队项目(社科),科学教育数字化转型理论与实践创新团队
·北京师范大学中央高校基本科研业务费,面向中华优秀传统文化普及教育的VR古籍理论研究与平台建设
出版著作:
·合著:《影响教育的30项脑科学研究》,北京:教育科学出版社
发表论文:
一作、共一、通讯:
·Jiang Y, Zhao L, Zhang Y, et al. Bilingual Experience and Functional Neuroplasticity: Insights From Resting-State Functional Connectivity and Functional Network Topology in the Brain[J]. Journal of Integrative Neuroscience, 2026, 25(4).
·Liu X, Tong X, Yang Y, et al. The effect of bilingualism on the functional neuroplasticity of the cerebellum[J]. Bilingualism: Language and Cognition, 2025: 1-17.
·Liu X, Yang Y, Liang Y, et al. Learning Chinese induces altered resting-state functional connectivity relating to orthographic and phonological processing in adult alphabetic language speakers[J]. Brain Structure and Function, 2025, 230(7): 118.
·Liu X, Gao Z, Qiao X, et al. Exploring the Relationships Among Little‐C, Big‐C, and Divergent Thinking: A Resting‐State fMRI Study[J]. The Journal of Creative Behavior, 2025, 59(2): e70014.
·Liu X, Zhang Y, Weng Y, et al. Levodopa therapy affects brain functional network dynamics in Parkinson's disease[J]. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 2025, 136: 111169.
·Liu X, Gao Z, Liu W, et al. AoA-L2 and Usage-L2 modulate the functional neuroplasticity of the subcortex[J]. Brain and Language, 2023, 245: 105323.
·Liu X, Eickhoff S B, Caspers S, et al. Functional parcellation of human and macaque striatum reveals human-specific connectivity in the dorsal caudate[J]. NeuroImage, 2021, 235: 118006.
·Liu X, Eickhoff S B, Hoffstaedter F, et al. Joint multi-modal parcellation of the human striatum: functions and clinical relevance[J]. Neuroscience Bulletin, 2020, 36(10): 1123-1136.
·Liu X, Wu X, Zhong M, et al. Dynamic properties of human default mode network in eyes-closed and eyes-open[J]. Brain Topography, 2020, 33(6): 720-732.
·Liu X, Tu L, Chen X, et al. Effect of AoA-L2 on L1 and L2 networks in early and late bilinguals[J]. International Journal of Bilingualism, 2021, 25(6): 1616-1634.
·Liu X, Tu L, Chen X, et al. Dynamic Language Network in Early and Late Cantonese–Mandarin Bilinguals[J]. Frontiers in Psychology, 2020, 11: 1189.
·Liu X, Tu L, Wang J, et al. Onset age of L2 acquisition influences language network in early and late Cantonese-Mandarin bilinguals[J]. Brain and Language, 2017, 174: 16-28.
·Gao Z, Liu X, Gao M, et al. Neural correlates underlying creative ideation associated with malevolent or benevolent intentions[J]. Cerebral Cortex, 2025, 35(2): bhaf010.
·Tan X, Liu X, Han K, et al. Disrupted resting-state brain functional network properties in non-neuropsychiatric systemic lupus erythematosus patients[J]. Lupus, 2023, 32(4): 538-548.
·Weng Y, Liu X, Hu H, et al. Open eyes and closed eyes elicit different temporal properties of brain functional networks[J]. NeuroImage, 2020, 222: 117230.
·Gao Z, Liu X, Zhang D, et al. Subcortical structures and visual divergent thinking: a resting-state functional MRI analysis[J]. Brain Structure and Function, 2021, 226: 2617-2627.
·Gao Z, Liu X, Zhang D, et al. The indispensable role of the cerebellum in visual divergent thinking[J]. Scientific Reports, 2020, 10: 16552.
合作:
·Zhang Y, Tu L, Omata K, et al. Age of Language Acquisition Affects Topology of Brain White Matter Network: A Diffusion Tensor Magnetic Resonance Imaging Study[J]. Brain Sciences, 2026, 16(8): 878.
·Xu J, Wang N, Zhang Y, et al. Tackling Indecision and Indecisiveness: The Effectiveness of a Career Decision‐Making Course for Chinese High School Students[J]. The Career Development Quarterly, 2026.
·He Z, He W, Chen Z, et al. Intrinsic connectivity patterns of striatal subfields predict individual dimensions of psychopathology and are associated with cholinergic and serotonergic neurotransmission in schizophrenia[J]. Neuropsychopharmacology, 2026: 1-12.
·Gao Z, Liu X, Teng J, et al. Subcortical neural basis of malevolent creativity[J]. iScience, 2025, 28(11).
·Zhao L, Tu L, Zhang M, et al. The effects of second-language age of acquisition on brain structural networks: A DTI study of high-proficient bilinguals[J]. Journal of Neurolinguistics, 2023, 68: 101155.
·Friedrich P, Forkel S J, Amiez C, et al. Imaging evolution of the primate brain: the next frontier?[J]. NeuroImage, 2021: 117685.
·Chen J, Müller V I, Dukart J, et al. Intrinsic connectivity patterns of task-defined brain networks allow individual prediction of cognitive symptom dimension of schizophrenia and are linked to molecular architecture[J]. Biological Psychiatry, 2021, 89(3): 308-319.
·Reuter N, Genon S, Masouleh S K, et al. CBPtools: a Python package for regional connectivity-based parcellation[J]. Brain Structure and Function, 2020, 225(4): 1261-1275.
·Wei Q, Zhao L, Zou Y, et al. The role of altered brain structural connectivity in resilience, vulnerability, and disease expression to schizophrenia[J]. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 2020, 101: 109917.
·Chen J, Patil K R, Weis S, et al. Neurobiological divergence of the positive and negative schizophrenia subtypes identified on a new factor structure of psychopathology using non-negative factorization: an international machine learning study[J]. Biological Psychiatry, 2020, 87(3): 282-293.
·Tu L, Niu M, Pan X, et al. Age of Acquisition of Mandarin Modulates Cortical Thickness in High-Proficient Cantonese–Mandarin Bidialectals[J]. Journal of Psycholinguistic Research, 2020, 50(4): 723-736.
·Zhong M, Yang W, Huang B, et al. Effects of levodopa therapy on voxel-based degree centrality in Parkinson’s disease[J]. Brain Imaging and Behavior, 2019, 13(5): 1202-1219.
·Wu X, Xie Q, Liu X, et al. Spatially Overlapping Regions Show Abnormal Thalamo-frontal Circuit and Abnormal Precuneus in Disorders of Consciousness[J]. Brain Topography, 2019, 32(3): 445-460.
·Niu C, Tan X, Liu X, et al. Cortical thickness reductions associate with abnormal resting-state functional connectivity in non-neuropsychiatric systemic lupus erythematosus[J]. Brain Imaging and Behavior, 2018, 12(3): 674-684.
·Zhao L, Tan X, Wang J, et al. Brain white matter structural networks in patients with non-neuropsychiatric systemic lupus erythematosus[J]. Brain Imaging and Behavior, 2018, 12(1): 142-155.
·Niu M, Wang Y, Jia Y, et al. Common and specific abnormalities in cortical thickness in patients with major depressive and bipolar disorders[J]. EBioMedicine, 2017, 16: 162-171.
·Gao Z, Zhang D, Liang A, et al. Exploring the associations between intrinsic brain connectivity and creative ability using functional connectivity strength and connectome analysis[J]. Brain Connectivity, 2017, 7(9): 590-601.
获奖情况
·2024年度 北京师范大学 优秀辅导员
·2025年度 北京师范大学珠海校区 优秀教育实践工作者
·2025年度 北京师范大学未来教育学院 优秀班主任