[1] |
Ayaka Sugeno, Wenhui Piao, Miki Yamazaki, Kiyofumi Takahashi, Koji Arikawa, Hiroko Matsunaga, Masahito Hosokawa, Daisuke Tominaga, Yoshio Goshima, Haruko Takeyama, Toshio Ohshima.
Cortical transcriptome analysis after spinal cord injury reveals the regenerative mechanism of central nervous system in CRMP2 knock-in mice
[J]. Neural Regeneration Research, 2021, 16(7): 1258-1265.
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[2] |
Zhongwu Liu, Hongqi Xin, Michael Chopp.
Axonal remodeling of the corticospinal tract during neurological recovery after stroke
[J]. Neural Regeneration Research, 2021, 16(5): 939-943.
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[3] |
Yuexian Cui, Xuelian Jin, Jun Young Choi, Byung Gon Kim.
Modeling subcortical ischemic white matter injury in rodents: unmet need for a breakthrough in translational research
[J]. Neural Regeneration Research, 2021, 16(4): 638-642.
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[4] |
Alba Guijarro-Belmar, Dominik Mateusz Domanski, Xuenong Bo, Derryck Shewan, Wenlong Huang.
The therapeutic potential of targeting exchange protein directly activated by cyclic adenosine 3′,5′-monophosphate (Epac) for central nervous system trauma
[J]. Neural Regeneration Research, 2021, 16(3): 460-469.
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[5] |
Jin-Hui Xu, Xu-Zhen Qin, Hao-Nan Zhang, Yan-Xia Ma, Shi-Bin Qi, Hong-Cheng Zhang, Jin-Jin Ma, Xin-Ya Fu, Ji-Le Xie, Saijilafu.
Deletion of Krüppel-like factor-4 promotes axonal regeneration in mammals
[J]. Neural Regeneration Research, 2021, 16(1): 166-171.
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[6] |
Ling-Xiao Deng, Nai-Kui Liu, Ryan Ning Wen, Shuang-Ni Yang, Xuejun Wen, Xiao-Ming Xu.
Laminin-coated multifilament entubulation, combined with Schwann cells and glial cell line-derived neurotrophic factor, promotes unidirectional axonal regeneration in a rat model of thoracic spinal cord hemisection
[J]. Neural Regeneration Research, 2021, 16(1): 186-191.
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[7] |
William Rodemer, Jianli Hu, Michael E. Selzer, Michael I. Shifman.
Heterogeneity in the regenerative abilities of central
nervous system axons within species: why do some
neurons regenerate better than others?
[J]. Neural Regeneration Research, 2020, 15(6): 996-1005.
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[8] |
Meltem Kutluer, Li Huang, Valeria Marigo.
Targeting molecular pathways for the treatment of
inherited retinal degeneration
[J]. Neural Regeneration Research, 2020, 15(10): 1784-1791.
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[9] |
Jia-He Li, Zhong-Ju Shi, Yan Li, Bin Pan, Shi-Yang Yuan, Lin-Lin Shi, Yan Hao, Fu-Jiang Cao, Shi-Qing Feng.
Bioinformatic identification of key candidate genes and
pathways in axon regeneration after spinal cord injury in zebrafish
[J]. Neural Regeneration Research, 2020, 15(1): 103-111.
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[10] |
An Beckers, Lieve Moons.
Dendritic shrinkage after injury: a cellular killer or a necessity for axonal regeneration?
[J]. Neural Regeneration Research, 2019, 14(8): 1313-1316.
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[11] |
David Romeo-Guitart, Caty Casas.
Network-centric medicine for peripheral nerve injury: treating the whole to boost endogenous mechanisms of neuroprotection and regeneration
[J]. Neural Regeneration Research, 2019, 14(7): 1122-1128.
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[12] |
Lir-Wan Fan, Kathleen Carter, Abhay Bhatt, Yi Pang.
Rapid transport of insulin to the brain following intranasal administration in rats
[J]. Neural Regeneration Research, 2019, 14(6): 1046-1051.
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[13] |
Tao Wang,Li-Ni Zeng,Zhe Zhu,Yu-Hui Wang,Lu Ding,Wei-Bin Luo,Xiao-Min Zhang,Zhi-Wei He,Hong-Fu Wu.
Effect of lentiviral vector-mediated overexpression of hypoxia-inducible factor 1 alpha delivered by pluronic F-127 hydrogel on brachial plexus avulsion in rats
[J]. Neural Regeneration Research, 2019, 14(6): 1069-1078.
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[14] |
Cheryl Qian Ying Yong,Bor Luen Tang .
Rabs and axonal regeneration
[J]. Neural Regeneration Research, 2019, 14(4): 566-569.
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[15] |
Yongchao Mou,Xue-Jun Li .
[J]. Neural Regeneration Research, 2019, 14(4): 574-577.
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