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细胞图库 Cell image gallery
神经损伤与再生
神经损伤与再生
脑损伤与再生
脑损伤与再生
脊髓损伤与再生
脊髓损伤与再生
视神经损伤与再生
视神经损伤与再生
周围神经损伤与<BR>再生
周围神经损伤与
再生
神经退行性病与<BR>再生
神经退行性病与
再生
颅神经损伤与再生
颅神经损伤与再生
干细胞与神经再生
干细胞与神经再生
友情链接 Links  
· Neural Regeneration Research
· 《中国组织工程研究》杂志
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中国神经再生研究(英文版)  
 
 
 
2019年, 第14卷 第4期
出版日期:2019-04-15

观点:脑损伤修复保护与再生
观点:退行性病与再生
观点:视神经损伤修复保护与再生
原著:脑损伤修复保护与再生
原著:退行性病与再生
原著:脊髓损伤修复保护与再生
原著:周围神经损伤修复保护与再生
原著:视神经损伤修复保护与再生
原著:颅神经损伤修复保护与再生
综述:神经损伤修复保护与再生
综述:视神经损伤修复保护与再生
其它
      综述:视神经损伤修复保护与再生
激光角膜屈光手术后的角膜再神经支配
Francisco Bandeira,Nur Zahira Yusoff,Gary Hin-Fai Yam, Jodhbir Singh Mehta. Corneal re-innervation following refractive surgery treatments[J]. Neural Regeneration Research, 2019, 14(4): 557-565.
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      综述:神经损伤修复保护与再生
Rab蛋白和轴突再生
Cheryl Qian Ying Yong,Bor Luen Tang . Rabs and axonal regeneration[J]. Neural Regeneration Research, 2019, 14(4): 566-569.
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从神经生长因子的伤害感受中解耦神经营养功能:我们可以从罕见病中学到什么?
Kijung Sung, Wanlin Yang, Chengbiao Wu.

Uncoupling neurotrophic function from nociception of nerve growth factor: what can be learned from a rare human disease?[J]. Neural Regeneration Research, 2019, 14(4): 570-573.

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Uncoupling neurotrophic function from nociception of nerve growth factor: what can be learned from a rare human disease?[J]. Neural Regeneration Research, 2019, 14(4): 570-573.')" href="#">引用本文
通过靶向遗传性痉挛性截瘫的线粒体动力学来挽救轴突缺陷
Yongchao Mou,Xue-Jun Li .

Rescue axonal defects by targeting mitochondrial dynamics in hereditary spastic paraplegias[J]. Neural Regeneration Research, 2019, 14(4): 574-577.

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Rescue axonal defects by targeting mitochondrial dynamics in hereditary spastic paraplegias[J]. Neural Regeneration Research, 2019, 14(4): 574-577.')" href="#">引用本文
“老狗学会了新把戏”:针对正常和病理老化相关的认知能力下降的神经细胞外基质
Adam D. Richard, Xiao-Hong Lu. “Teaching old dogs new tricks”: targeting neural extracellular matrix for normal and pathological aging-related cognitive decline[J]. Neural Regeneration Research, 2019, 14(4): 578-581.
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是否采取了一项保护神经元免受催眠胆固醇代谢影响的选择性策略?
Elisa Piscianz,Liza Vecchi Brumatti,Alberto Tommasini,Annalisa Marcuzzi . Is autophagy an elective strategy to protect neurons from dysregulated cholesterol metabolism?[J]. Neural Regeneration Research, 2019, 14(4): 582-587.
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      观点:退行性病与再生
TRiC/含TCP1伴侣蛋白亚基调节tau蛋白磷酸化和逆行轴突运输-对神经退行性疾病的影响?
Xu-Qiao Chen. Involvement of T-complex protein 1-ring complex/chaperonin containing T-complex protein 1 (TRiC/CCT) in retrograde axonal transport through tau phosphorylation[J]. Neural Regeneration Research, 2019, 14(4): 588-590.
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观察嗅觉障碍与帕金森病抑郁症之间的关系
Jessica L. Ilkiw, Marcelo M. S. Lima. Perspectives for the association between olfactory disturbances and depression in Parkinson’s disease[J]. Neural Regeneration Research, 2019, 14(4): 591-592.
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      观点:视神经损伤修复保护与再生
间接性外伤性视神经病变:在闭合性头部创伤的背景下建模视神经损伤
Emma G. Burke, Shelby M. Cansler, Nathan K. Evanson. Indirect traumatic optic neuropathy: modeling optic nerve injury in the context of closed head trauma[J]. Neural Regeneration Research, 2019, 14(4): 593-594.
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      观点:脑损伤修复保护与再生
星形胶质细胞合胞体:大脑中的功能性网状系统
Conrad M. Kiyoshi, Min Zhou. Astrocyte syncytium: a functional reticular system in the brain[J]. Neural Regeneration Research, 2019, 14(4): 595-596.
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      原著:脑损伤修复保护与再生
人骨髓间充质干细胞对脑缺血神经保护作用可由抗细胞凋亡机制介导
Yuyang Zhang,Seongjin Yu,Julian P. Tuazon,Jea-Young Lee,Sydney Corey,Lauren Kvederis,Chase Kingsbury,Yuji Kaneko,Cesar V. Borlongan. Neuroprotective effects of human bone marrow mesenchymal stem cells against cerebral ischemia are mediated in part by an anti-apoptotic mechanism[J]. Neural Regeneration Research, 2019, 14(4): 597-604.
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Neuroprotective effects of human bone marrow mesenchymal stem cells against cerebral ischemia are mediated in part by an anti-apoptotic mechanism[J]. Neural Regeneration Research, 2019, 14(4): 597-604.')" href="#">引用本文
刺槐素通过NLRP3信号通路对抗脑缺血再灌注
Juan Bu,Shen Shi,Hui-Qin Wang,Xiao-Shan Niu,Zong-Feng Zhao,Wei-Dong Wu,Xiao-Ling Zhang,Zhi Ma,Yan-Jun Zhang,Hui Zhang,Yi Zhu. Acacetin protects against cerebral ischemia-reperfusion injury via the NLRP3 signaling pathway[J]. Neural Regeneration Research, 2019, 14(4): 605-612.
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木犀草素诱导Ts65Dn小鼠海马神经的发生
Wen-Bo Zhou,Zong-Ning Miao, Bin Zhang,Wei Long,Fang-Xiu Zheng,Jing Kong,Bin Yu. Luteolin induces hippocampal neurogenesis in the Ts65Dn mouse model of Down syndrome[J]. Neural Regeneration Research, 2019, 14(4): 613-620.
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揭示突触结合蛋白7在短期突触可塑性中功能的数学模型
Yao He, Don Kulasiri,Jingyi Liang. A mathematical model of synaptotagmin 7 revealing functional importance of short-term synaptic plasticity[J]. Neural Regeneration Research, 2019, 14(4): 621-631.
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人类创伤性脑损伤组织长非编码RNA和mRNA的表达特征
Li-Xiang Yang,Li-Kun Yang,Jie Zhu,Jun-Hui Chen,Yu-Hai Wang,Kun Xiong. Expression signatures of long non-coding RNA and mRNA in human traumatic brain injury[J]. Neural Regeneration Research, 2019, 14(4): 632-641.
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重度缺氧缺血性脑病新生儿静息态网络的复杂性及其幅度变化
Hong-Xin Li,Min Yu,Ai-Bin Zheng,Qin-Fen Zhang,Guo-Wei Hua,Wen-Juan Tu,Li-Chi Zhang. Resting-state network complexity and magnitude changes in neonates with severe hypoxic ischemic encephalopathy[J]. Neural Regeneration Research, 2019, 14(4): 642-648.
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      原著:退行性病与再生
睾酮对阿尔茨海默病模型大鼠认知功能障碍的保护机制
Xu-Sheng Yan,Zhan-Jun Yang,Jian-Xin Jia,Wei Song, Xin Fang,Zhi-Ping Cai,Dong-Sheng Huo, He Wang. Protective mechanism of testosterone on cognitive impairment in a rat model of Alzheimer’s disease[J]. Neural Regeneration Research, 2019, 14(4): 649-657.
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Aβ前体蛋白突变能改变阿尔茨海默病的病理进程
Nuo-Min Li,Ke-Fu Liu,Yun-Jie Qiu,Huan-Huan Zhang,Hiroshi Nakanishi,Hong Qing . Mutations of beta-amyloid precursor protein alter the consequence of Alzheimer’s disease pathogenesis[J]. Neural Regeneration Research, 2019, 14(4): 658-665.
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帕金森病患者大脑的情绪加工:血氧水平依赖性功能磁共振成像研究
Mohammed Benzagmout,Saïd Boujraf,Badreeddine Alami,Hassane Ali Amadou,Halima El Hamdaoui,Amine Bennani,Mounir Jaafari, Ismail Rammouz,Mustapha Maaroufi,Rabia Magoul,Driss Boussaoud.

Emotion processing in Parkinson’s disease: a blood oxygenation level-dependent functional magnetic resonance imaging study[J]. Neural Regeneration Research, 2019, 14(4): 666-672.

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Emotion processing in Parkinson’s disease: a blood oxygenation level-dependent functional magnetic resonance imaging study[J]. Neural Regeneration Research, 2019, 14(4): 666-672.')" href="#">引用本文
      原著:颅神经损伤修复保护与再生
电针促进面神经损伤后的再生:上调神经元胶质细胞源性神经营养因子和神经钙粘素的表达
Jing Fei,Lin Gao,Huan-Huan Li,Qiong-Lan Yuan,Lei-Ji Li . Electroacupuncture promotes peripheral nerve regeneration after facial nerve crush injury and upregulates the expression of glial cell-derived neurotrophic factor[J]. Neural Regeneration Research, 2019, 14(4): 673-682.
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      原著:周围神经损伤修复保护与再生
牵正散促进大鼠损伤坐骨神经再生
Zhi-Yong Wang,Li-Hua Qin, Wei-Guang Zhang,Pei-Xun Zhang,Bao-Guo Jiang . Qian-Zheng-San promotes regeneration after sciatic nerve crush injury in rats[J]. Neural Regeneration Research, 2019, 14(4): 683-691.
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几种不同神经转位修复大鼠长段尺神经缺损
Fei Yu,You-Lai Yu, Su-Ping Niu,Pei-Xun Zhang,Xiao-Feng Yin,Na Han,Ya-Jun Zhang, Dian-Ying Zhang,Yu-Hui Kou, Bao-Guo Jiang. Repair of long segmental ulnar nerve defects in rats by several different kinds of nerve transposition[J]. Neural Regeneration Research, 2019, 14(4): 692-698.
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不同神经转位修复正中神经后脊髓前角细胞功能的再支配
Yu-Song Yuan,Su-Ping Niu,You-Lai Yu,Pei-Xun Zhang,Xiao-Feng Yin,Na Han,Ya-Jun Zhang,Dian-Ying Zhang,Hai-Lin Xu,Yu-Hui Kou,Bao-Guo Jiang. Reinnervation of spinal cord anterior horn cells after median nerve repair using transposition with other nerves[J]. Neural Regeneration Research, 2019, 14(4): 699-705.
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两端不同内径生物套管小间隙套接缝合用于周围神经缺损的转位修复
Yu-Hui Kou, You-Lai Yu, Ya-Jun Zhang,Na Han,Xiao-Feng Yin,Yu-Song Yuan,Fei Yu,Dian-Ying Zhang,Pei-Xun Zhang,Bao-Guo Jiang. Repair of peripheral nerve defects by nerve transposition using small gap bio-sleeve suture with different inner diameters at both ends[J]. Neural Regeneration Research, 2019, 14(4): 706-712.
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      原著:脊髓损伤修复保护与再生
无骨折脱位型颈脊髓损伤预后模型的建立与验证
Jie Wang,Shuai Guo,Xuan Cai,Jia-Wei Xu,Hao-Peng Li .
Establishment and verification of a surgical prognostic model for cervical spinal cord injury without radiological abnormality
 
[J]. Neural Regeneration Research, 2019, 14(4): 713-720.
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Establishment and verification of a surgical prognostic model for cervical spinal cord injury without radiological abnormality
 
[J]. Neural Regeneration Research, 2019, 14(4): 713-720.')" href="#">引用本文
雷帕霉素激活自噬和Akt信号通路实现对大鼠脊髓损伤的神经保护作用
Xi-Gong Li,Jun-Hua Du, Yang Lu, Xiang-Jin Lin. Neuroprotective effects of rapamycin on spinal cord injury in rats by increasing autophagy and Akt signaling[J]. Neural Regeneration Research, 2019, 14(4): 721-727.
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      原著:视神经损伤修复保护与再生
自主跑轮运动可延缓视神经部分横断后视网膜的原发性变性
Hong-Ying Li,Xi Hong 1,Mi Huang,Kwok-Fai So. Voluntary running delays primary degeneration in rat retinas after partial optic nerve transection[J]. Neural Regeneration Research, 2019, 14(4): 728-734.
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      其它
存活和免疫介导的神经可塑性疾病中的线粒体自噬
Ian James Martins. Human survival and immune mediated mitophagy in neuroplasticity disorders[J]. Neural Regeneration Research, 2019, 14(4): 735-735.
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