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Libing Zhou

Showing results (31-40 of 92) with videos related to

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International Review of Neurobiology|October 15, 2019
The effects and potential mechanisms of locomotor training on improvements of functional recovery after spinal cord injuryPanpan Yu, Wei Zhang, Yansheng Liu, et al.
Advances in Medical Education and Practice|June 5, 2026
A Comparative Educational Intervention Study of Peer Teaching and Flipped Classroom Models in Pediatric Intensive Care RotationShuiyan Wu, Jiajun Ma, Libing Zhou, et al.
IBRO Neuroscience Reports|February 24, 2023
Corticospinal circuit neuroplasticity may involve silent synapses: Implications for functional recovery facilitated by neuromodulation after spinal cord injuryMingcong Chen, Zuxin Chen, Xiao Xiao, et al.
Iscience|July 26, 2021
Celsr3 is required for Purkinje cell maturation and regulates cerebellar postsynaptic plasticityQinji Zhou, Jingwen Qin, Yaying Liang, et al.
Cell Death & Disease|November 3, 2025
Atypical cadherin CELSR2 acts as a therapeutic target for glioma through WNT3A/β-catenin signalingAimei Liu, Xin Geng, Xinyue Li, et al.
BMC Pediatrics|August 24, 2019
Novel mutations of the POLR3A gene caused POLR3-related leukodystrophy in a Chinese family: a case reportShuiyan Wu, Zhenjiang Bai, Xingqiang Dong, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|October 5, 2012
A role for atypical cadherin Celsr3 in hippocampal maturation and connectivityJia Feng, Ying Xu, Meizhi Wang, et al.
Plos One|July 9, 2014
Functional motor recovery from motoneuron axotomy is compromised in mice with defective corticospinal projectionsYuetong Ding, Yibo Qu, Jia Feng, et al.
Molecular Neurobiology|January 2, 2023
Celsr2 Knockout Alleviates Inhibitory Synaptic Stripping and Benefits Motoneuron Survival and Axon Regeneration After Branchial Plexus AvulsionLingtai Yu, Mengfan Liu, Fuxiang Li, et al.
Molecular Neurobiology|June 9, 2022
Celsr3 Inactivation in the Brainstem Impairs Rubrospinal Tract Development and Mouse Behaviors in Motor Coordination and Mechanic-Induced ResponseBoli Chen, Fuxiang Li, Bin Jia, et al.
Pageof 10

Showing results (31-40 of 92) with videos related to

Sort By:
Pageof 10
International Review of Neurobiology|October 15, 2019
The effects and potential mechanisms of locomotor training on improvements of functional recovery after spinal cord injuryPanpan Yu, Wei Zhang, Yansheng Liu, et al.
Advances in Medical Education and Practice|June 5, 2026
A Comparative Educational Intervention Study of Peer Teaching and Flipped Classroom Models in Pediatric Intensive Care RotationShuiyan Wu, Jiajun Ma, Libing Zhou, et al.
IBRO Neuroscience Reports|February 24, 2023
Corticospinal circuit neuroplasticity may involve silent synapses: Implications for functional recovery facilitated by neuromodulation after spinal cord injuryMingcong Chen, Zuxin Chen, Xiao Xiao, et al.
Iscience|July 26, 2021
Celsr3 is required for Purkinje cell maturation and regulates cerebellar postsynaptic plasticityQinji Zhou, Jingwen Qin, Yaying Liang, et al.
Cell Death & Disease|November 3, 2025
Atypical cadherin CELSR2 acts as a therapeutic target for glioma through WNT3A/β-catenin signalingAimei Liu, Xin Geng, Xinyue Li, et al.
BMC Pediatrics|August 24, 2019
Novel mutations of the POLR3A gene caused POLR3-related leukodystrophy in a Chinese family: a case reportShuiyan Wu, Zhenjiang Bai, Xingqiang Dong, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|October 5, 2012
A role for atypical cadherin Celsr3 in hippocampal maturation and connectivityJia Feng, Ying Xu, Meizhi Wang, et al.
Plos One|July 9, 2014
Functional motor recovery from motoneuron axotomy is compromised in mice with defective corticospinal projectionsYuetong Ding, Yibo Qu, Jia Feng, et al.
Molecular Neurobiology|January 2, 2023
Celsr2 Knockout Alleviates Inhibitory Synaptic Stripping and Benefits Motoneuron Survival and Axon Regeneration After Branchial Plexus AvulsionLingtai Yu, Mengfan Liu, Fuxiang Li, et al.
Molecular Neurobiology|June 9, 2022
Celsr3 Inactivation in the Brainstem Impairs Rubrospinal Tract Development and Mouse Behaviors in Motor Coordination and Mechanic-Induced ResponseBoli Chen, Fuxiang Li, Bin Jia, et al.
Pageof 10