[1] |
Qiu-Yuan Gong, Lin Cai, Yao Jing, Wei Wang, Dian-Xu Yang, Shi-Wen Chen, Heng-Li Tian.
Urolithin A alleviates blood-brain barrier disruption and attenuates neuronal apoptosis following traumatic brain injury in mice
[J]. Neural Regeneration Research, 2022, 17(9): 2007-2013.
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[2] |
Na Wu, Chong-Jie Cheng, Jian-Jun Zhong, Jun-Chi He, Zhao-Si Zhang, Zhi-Gang Wang, Xiao-Chuan Sun, Han Liu.
Essential role of MALAT1 in reducing traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(8): 1776-1784.
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[3] |
Xiu-Quan Wu, Ning Su, Zhou Fei, Fei Fei.
Homer signaling pathways as effective therapeutic targets for ischemic and traumatic brain injuries and retinal lesions
[J]. Neural Regeneration Research, 2022, 17(7): 1454-1461.
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[4] |
Sung Ho Jang, You Sung Seo.
Diffusion tensor tractography characteristics of axonal injury in concussion/mild traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(5): 978-982.
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[5] |
Xiang-Long Li, Bin Wang, Fu-Bing Yang, Li-Gang Chen, Jian You.
HOXA11-AS aggravates microglia-induced neuroinflammation after traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(5): 1096-1105.
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[6] |
Yu-Qi Cheng, Chen-Rui Wu, Meng-Ran Du, Qiang Zhou, Bi-Ying Wu, Jia-Yuan-Yuan Fu, Ehab Balawi, Wei-Lin Tan, Zheng-Bu Liao.
CircLphn3 protects the blood-brain barrier in traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(4): 812-818.
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[7] |
Iván Alquisiras-Burgos, Javier Franco-Pérez, Moisés Rubio-Osornio, Penélope Aguilera.
The short form of the SUR1 and its functional implications in the damaged brain
[J]. Neural Regeneration Research, 2022, 17(3): 488-496.
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[8] |
Wen-Yuan Li, Xiu-Mei Fu, Zhen-Dong Wang, Zhi-Gang Li, Duo Ma, Ping Sun, Gui-Bo Liu, Xiao-Feng Zhu, Ying Wang.
Krüppel-like factor 7 attenuates hippocampal neuronal injury after traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(3): 661-672.
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[9] |
Gang Wang, Hua-Ling Wu, Yue-Ping Liu, De-Qi Yan, Zi-Lin Yuan, Li Chen, Qian Yang, Yu-Song Gao, Bo Diao.
Pre-clinical study of human umbilical cord mesenchymal stem cell transplantation for the treatment of traumatic brain injury: safety evaluation from immunogenic and oncogenic perspectives
[J]. Neural Regeneration Research, 2022, 17(2): 354-361.
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[10] |
Xiao-Jian Xu, Meng-Shi Yang, Bin Zhang, Qian-Qian Ge, Fei Niu, Jin-Qian Dong, Yuan Zhuang, Bai-Yun Liu.
Genome-wide interrogation of transfer RNA-derived small RNAs in a mouse model of traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(2): 386-394.
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[11] |
Milena Stevanovic, Danijela Stanisavljevic Ninkovic, Marija Mojsin, Danijela Drakulic, Marija Schwirtlich.
Interplay of SOX transcription factors and microRNAs in the brain under physiological and pathological conditions
[J]. Neural Regeneration Research, 2022, 17(11): 2325-2334.
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[12] |
Vito Antonio Baldassarro, Agnese Stanzani, Luciana Giardino, Laura Calzà, Luca Lorenzini.
Neuroprotection and neuroregeneration: roles for the white matter
[J]. Neural Regeneration Research, 2022, 17(11): 2376-2380.
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[13] |
Xuan-Yu Fang, Da-Wei Zhao, Chao Zhang, Hong-Fei Ge, Xu-Yang Zhang, Feng-Chun Zhao, Yi-Bin Jiang, Hua Feng, Rong Hu.
A three-dimensional matrix system containing melatonin and neural stem cells repairs damage from traumatic brain injury in rats
[J]. Neural Regeneration Research, 2022, 17(11): 2512-2517.
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[14] |
Yang Jiao, Yue-Tong Sun, Nai-Fei Chen, Li-Na Zhou, Xin Guan, Jia-Yi Wang, Wen-Juan Wei, Chao Han, Xiao-Lei Jiang, Ya-Chen Wang, Wei Zou, Jing Liu.
Human umbilical cord-derived mesenchymal stem cells promote repair of neonatal brain injury caused by hypoxia/ischemia in rats
[J]. Neural Regeneration Research, 2022, 17(11): 2518-2525.
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[15] |
Liang Liu, Quan-Jun Deng.
Role of platelet-derived extracellular vesicles in traumatic brain injury-induced coagulopathy and inflammation
[J]. Neural Regeneration Research, 2022, 17(10): 2102-2107.
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