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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
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综述文章 Review Articles? ? 观点文章 Perspective Articles? ? 神经损伤与再生 Basic Research in Nerve Injury and Regeneration? ?
脑损伤与再生 Brain Injury and Neural Regeneration
? ? 退行性病与再生 Neurodegenerative Disease and Neural Regeneration? ?
脊髓损伤与再生 Spinal Cord Injury and Neural Regeneration
? ? 周围神经损伤与再生 Peripheral Nerve Injury and Regeneration? ?
视神经损伤与再生 Optic Nerve Injury and Neural Regeneration
? ? 颅神经损伤与再生 Cranial Nerve Injury and Neural Regeneration? ? 2016年总目次 Total contents in 2016? ?
最新期刊 Current Issue ??2019, Vol.14 (12) Published: 2019-12-15
?
???简明目录(Article List) 摘要目录(Full Abstracts) 分类目录(Classified List) 全年目录(Annual List) 基金目录(Fund List)
???封面目录(Cover List) 在线出版(Online Publication) 本期推荐(Current Issue Recommended) 编辑述评(Editor's Advice) 
???主编的话(Editors-in-Chief's words)
????????综述:退行性病与再生
孕酮对少突胶质细胞系的影响:所有道路都会导致黄体酮受体
? Progesterone effects on the oligodendrocyte linage: all roads lead to the progesterone receptor
Ignacio Jure,Alejandro F. De Nicola,Florencia Labombarda. Progesterone effects on the oligodendrocyte linage: all roads lead to the progesterone receptor[J]. Neural Regeneration Research, 2019, 14(12): 2029-2034.
? PDF (400 KB) ? ( 50 )
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β淀粉样蛋白亚型在神经干细胞生物学中的生理和病理作用
? Physiological and pathological effects of amyloid-βspecies in neural stem cell biology
Adela Bernabeu-Zornoza, Raquel Coronel, Charlotte Palmer, María Monteagudo, Alberto Zambrano, Isabel Liste. Physiological and pathological effects of amyloid-βspecies in neural stem cell biology[J]. Neural Regeneration Research, 2019, 14(12): 2035-2042.
? PDF (356 KB) ? ( 45 )
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????????综述:神经损伤修复保护与再生
神经胶质凝固组织:凝血酶受体和凝血途径作为神经疾病的主要参与者
? The neuro-glial coagulonome: the thrombin receptor and coagulation pathways as major players in neurological diseases
Shany G. Gofrit, Efrat Shavit-Stein. The neuro-glial coagulonome: the thrombin receptor and coagulation pathways as major players in neurological diseases[J]. Neural Regeneration Research, 2019, 14(12): 2043-2053.
? PDF (1058 KB) ? ( 44 )
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????????综述:脊髓损伤修复保护与再生
从皮质到脊髓:脊髓损伤后的运动回路可塑性
? From cortex to cord: motor circuit plasticity after spinal cord injury
Andrew R. Brown,Marina Martinez. From cortex to cord: motor circuit plasticity after spinal cord injury[J]. Neural Regeneration Research, 2019, 14(12): 2054-2062.
? PDF (1161 KB) ? ( 40 )
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转向髓鞘逆转
? Turning to myelin turnover
Tobias J. Buscham,Maria A. Eichel,Sophie B. Siems,Hauke B. Werner. Turning to myelin turnover[J]. Neural Regeneration Research, 2019, 14(12): 2063-2066.
? PDF (155 KB) ? ( 35 )
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????????观点:神经损伤修复保护与再生
斑马鱼脑中的成人神经发生和再生:参与的神经营养因子是什么?
? Adult neurogenesis and regeneration in zebrafish brain: are the neurotrophins involved in?
Pietro Cacialli, Carla Lucini. Adult neurogenesis and regeneration in zebrafish brain: are the neurotrophins involved in?[J]. Neural Regeneration Research, 2019, 14(12): 2067-2068.
? PDF (324 KB) ? ( 30 )
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G蛋白偶联雌激素受体1激活触发神经元和星形胶质细胞上的不同信号传导途径
? G protein-coupled estrogen receptor 1 (GPER) activation triggers different signaling pathways on neurons and astrocytes
Cláudio Roque, Gra?a Baltazar. G protein-coupled estrogen receptor 1 (GPER) activation triggers different signaling pathways on neurons and astrocytes[J]. Neural Regeneration Research, 2019, 14(12): 2069-2070.
? PDF (287 KB) ? ( 35 )
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甲酰肽受体2在正常脑和神经病学中的作用
? Role of formyl peptide receptor 2(FPR2) in the normal brain and in neurological conditions
Wei-Yi Ong, John Jia En Chua. Role of formyl peptide receptor 2(FPR2) in the normal brain and in neurological conditions[J]. Neural Regeneration Research, 2019, 14(12): 2071-2072.
? PDF (367 KB) ? ( 39 )
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通过计算筛选鉴定天然产物作为神经疾病靶标
? MicroRNAs as biomarkers of diabetic retinopathy and disease progression
Janez Konc. MicroRNAs as biomarkers of diabetic retinopathy and disease progression[J]. Neural Regeneration Research, 2019, 14(12): 2075-2076.
? PDF (481 KB) ? ( 33 )
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远程光生物调节:一种新兴的神经保护策略
? Remote photobiomodulation: an emerging strategy for neuroprotection
Luke C. Gordon, Daniel M. Johnstone. Remote photobiomodulation: an emerging strategy for neuroprotection[J]. Neural Regeneration Research, 2019, 14(12): 2086-2087.
? PDF (111 KB) ? ( 36 )
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在通往多发性硬化症的新疗法的道路上:树突状细胞迁移到中枢神经系统
? On the road to new treatments for multiple sclerosis: targeting dendritic cell migration into the central nervous system
Megha Meena, Nathalie Cools. On the road to new treatments for multiple sclerosis: targeting dendritic cell migration into the central nervous system[J]. Neural Regeneration Research, 2019, 14(12): 2088-2090.
? PDF (1113 KB) ? ( 33 )
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????????观点:周围神经损伤修复保护与再生
3D生物打印工程神经导管促进长间隙周围神经再生
? Engineering nerve guidance conduits with three-dimenisonal bioprinting technology for long gap peripheral nerve regeneration
Jian Du, Xiaofeng Jia. Engineering nerve guidance conduits with three-dimenisonal bioprinting technology for long gap peripheral nerve regeneration[J]. Neural Regeneration Research, 2019, 14(12): 2073-2074.
? PDF (427 KB) ? ( 36 )
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周围神经损伤啮齿动物运动功能评价的三维运动分析
? Three-dimensional motion analysis for evaluating motor function in rodents with peripheral nerve injury"
Akira Ito, Wang Tianshu, Junichi Tajino. Three-dimensional motion analysis for evaluating motor function in rodents with peripheral nerve injury"[J]. Neural Regeneration Research, 2019, 14(12): 2077-2078.
? PDF (513 KB) ? ( 32 )
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基于草甘膦的除草剂:周围神经系统脱髓鞘病症的危险因素?
? Glyphosate-based herbicide: a risk factor for demyelinating conditions of the peripheral nervous system?
Fabian Szepanowski, Christoph Kleinschnitz, Mark Stettner. Glyphosate-based herbicide: a risk factor for demyelinating conditions of the peripheral nervous system?[J]. Neural Regeneration Research, 2019, 14(12): 2079-2080.
? PDF (670 KB) ? ( 43 )
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????????观点:退行性病与再生
自噬缺陷和阿尔茨海默病:钙是关键吗?
? Defective autophagy and Alzheimer’s disease: is calcium the key?
Riccardo Filadi, Paola Pizzo. Defective autophagy and Alzheimer’s disease: is calcium the key?[J]. Neural Regeneration Research, 2019, 14(12): 2081-2082.
? PDF (675 KB) ? ( 30 )
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对利鲁唑作用机制的再思考:蛋白激酶CK1δ活性,TDP-43磷酸化和ALS药理学治疗之间的分子联系
? Rethinking to riluzole mechanism of action: the molecular link among protein kinase CK1δ activity, TDP-43 phosphorylation, and amyotrophic lateral sclerosis pharmacological treatment
Maicol Bissaro, Stefano Moro. Rethinking to riluzole mechanism of action: the molecular link among protein kinase CK1δ activity, TDP-43 phosphorylation, and amyotrophic lateral sclerosis pharmacological treatment[J]. Neural Regeneration Research, 2019, 14(12): 2083-2085.
? PDF (949 KB) ? ( 31 )
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神经退行性疾病中T细胞和肠道微生物群之间的交叉对话
? Cross-talk between T-cells and gut-microbiota in neurodegenerative disorders
Rodrigo Pacheco. Cross-talk between T-cells and gut-microbiota in neurodegenerative disorders[J]. Neural Regeneration Research, 2019, 14(12): 2091-2092.
? PDF (979 KB) ? ( 28 )
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????????观点:视神经损伤修复保护与再生
大麻素和核苷酸系统之间的相互作用作为视网膜细胞死亡中信号传导的新机制
? Interaction between cannabinoid and nucleotide systems as a new mechanism of signaling in retinal cell death
Hércules R. Freitas, Ricardo A. M. Reis, Ana L. M. Ventura, Guilherme R. Fran?a. Interaction between cannabinoid and nucleotide systems as a new mechanism of signaling in retinal cell death[J]. Neural Regeneration Research, 2019, 14(12): 2093-2094.
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????????原着:脑损伤修复保护与再生
神经外科内镜技术在脑室感染评估和治疗中的应用
? Application of neuroendoscopic surgical techniques in the assessment and treatment of cerebral ventricular infection
Feng Guan,Wei-Cheng Peng,Hui Huang,Zu-Yuan Ren,Zhen-Yu Wang,Ji-Di Fu,Ying-Bin Li,Feng-Qi Cui,Bin Dai,Guang-Tong Zhu,Zhi-Yong Xiao,Bei-Bei Mao,Zhi-Qiang Hu. Application of neuroendoscopic surgical techniques in the assessment and treatment of cerebral ventricular infection[J]. Neural Regeneration Research, 2019, 14(12): 2095-2103.
? PDF (707 KB) ? ( 31 )
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氧糖剥夺恢复后损伤脑微血管内皮细胞中可见多种新型差异表达的环状RNA
? Novel circular RNAs expressed in brain microvascular endothelial cells after oxygen-glucose deprivation/recovery
Wei Liu,Chao Jia,Li Luo,Hai-Lian Wang,Xiao-Li Min,Jiang-Hui Xu,Li-Qing Ma,Xia-Min Yang,Ying-Wei Wang,Fei-Fei Shang. Novel circular RNAs expressed in brain microvascular endothelial cells after oxygen-glucose deprivation/recovery[J]. Neural Regeneration Research, 2019, 14(12): 2104-2111.
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N-甲基-D-天冬氨酸受体亚基1可调控精神分裂症样小鼠海马齿状回的神经发生
? N-methyl-D-aspartate receptor subunit 1 regulates neurogenesis in the hippocampal dentate gyrus of schizophrenia-like mice
Juan Ding,Chun Zhang,Yi-Wei Zhang, Quan-Rui Ma, Yin-Ming Liu, Tao Sun,Juan Liu . N-methyl-D-aspartate receptor subunit 1 regulates neurogenesis in the hippocampal dentate gyrus of schizophrenia-like mice[J]. Neural Regeneration Research, 2019, 14(12): 2112-2117.
? PDF (2481 KB) ? ( 30 )
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基于静息状态功能磁共振成像技术分析国际标准头针常用穴位对脑区的调节作用
? Modulatory effect of International Standard Scalp Acupuncture on brain activation in the elderly as revealed by resting-state fMRI
Wai-Yeung Chung,Song-Yan Liu,Jing-Chun Gao,Yi-Jing Jiang,Jing Zhang,Shan-Shan Qu,Ji-Ping Zhang,Xiao-Long Tan,Jun-Qi Chen,Sheng-Xu Wang. Modulatory effect of International Standard Scalp Acupuncture on brain activation in the elderly as revealed by resting-state fMRI[J]. Neural Regeneration Research, 2019, 14(12): 2126-2131.
? PDF (776 KB) ? ( 39 )
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????????原着:神经损伤修复保护与再生
生长阻滞特异性转录因子5有利于神经元和胆碱能神经系统的恢复
? Long non-coding RNA GAS5 promotes PC12 cells differentiation into Tuj1-positive neuron-like cells and induces cell cycle arrest
He-Yan Zhao, Sheng-Tong Zhang, Xiang Cheng, Hao-Ming Li, Lei Zhang, Hui He, Jian-Bing Qin, Wei-Ye Zhang, Yan Sun, Guo-Hua Jin. Long non-coding RNA GAS5 promotes PC12 cells differentiation into Tuj1-positive neuron-like cells and induces cell cycle arrest[J]. Neural Regeneration Research, 2019, 14(12): 2118-2125.
? PDF (2452 KB) ? ( 29 )
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????????原着:周围神经损伤修复保护与再生
对侧C7移植到臂丛神经上干和人脱细胞异体神经移植修复肩肘功能恢复的比较
? Comparison between direct repair and human acellular nerve allografting during contralateral C7 transfer to the upper trunk for restoration of shoulder abduction and elbow flexion
Liang Li,Wen-Ting He,Ben-Gang Qin, Xiao-Lin Liu, Jian-Tao Yang,Li-Qiang Gu. Comparison between direct repair and human acellular nerve allografting during contralateral C7 transfer to the upper trunk for restoration of shoulder abduction and elbow flexion[J]. Neural Regeneration Research, 2019, 14(12): 2132-2140.
? PDF (4573 KB) ? ( 34 )
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轴突断裂引起足底血管扩张可作为大鼠坐骨神经损伤后C类神经纤维传入功能的新型评估方法
? Axonotmesis-evoked plantar vasodilatation as a novel assessment of C-fiber afferent function after sciatic nerve injury in rats
Xue-Song Wang,Xue Chen,Tian-Wen Gu,Ya-Xian Wang,Da-Guo Mi,Wen Hu. Axonotmesis-evoked plantar vasodilatation as a novel assessment of C-fiber afferent function after sciatic nerve injury in rats[J]. Neural Regeneration Research, 2019, 14(12): 2164-2172.
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基于定制解剖学的神经导管修复兔坐骨神经缺损:体外和体内实验评价
? Application of custom anatomy-based nerve conduits on rabbit sciatic nerve defects: in vitro and in vivo evaluations
Yamuhanmode·Alike,Maimaiaili·Yushan,Ajimu·Keremu,Alimujiang·Abulaiti,Zhen-Hui Liu,Wei Fu,Li-Wei Yan,Aihemaitijiang·Yusufu,Qing-Tang Zhu. Application of custom anatomy-based nerve conduits on rabbit sciatic nerve defects: in vitro and in vivo evaluations[J]. Neural Regeneration Research, 2019, 14(12): 2173-2182.
? PDF (6099 KB) ? ( 48 )
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胫神经和腓总神经损伤大鼠Wallerian变性过程中差异基因和蛋白的表达
? Differential gene and protein expression between rat tibial nerve and common peroneal nerve during Wallerian degeneration
Yao-Fa Lin,Zheng Xie,Jun Zhou,Gang Yin,Hao-Dong Lin. Differential gene and protein expression between rat tibial nerve and common peroneal nerve during Wallerian degeneration[J]. Neural Regeneration Research, 2019, 14(12): 2183-2191.
? PDF (3594 KB) ? ( 31 )
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新鲜人羊膜包裹可有效促进损伤腓总神经的修复
? Fresh human amniotic membrane effectively promotes the repair of injured common peroneal nerve
Zhong-Yuan Zhang,Jin Yang,Zhen-Hai Fan,Da-Li Wang,Yu-Ying Wang,Tao Zhang,Li-Mei Yu,Chang-Yin Yu. Fresh human amniotic membrane effectively promotes the repair of injured common peroneal nerve[J]. Neural Regeneration Research, 2019, 14(12): 2199-2208.
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????????原着:退行性病与再生
扩散峰度成像参数可用于鉴别阿尔茨海默病、遗忘型轻度认知障碍与正常衰老者
? Differentiating between Alzheimer’s disease, amnestic mild cognitive impairment, and normal aging via diffusion kurtosis imaging
Guo-Ping Song,Ting-Ting Yao,Dan Wang, Yue-Hua Li . Differentiating between Alzheimer’s disease, amnestic mild cognitive impairment, and normal aging via diffusion kurtosis imaging[J]. Neural Regeneration Research, 2019, 14(12): 2141-2146.
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光感基因神经调控技术激活谷氨酸受体改善阿尔茨海默病小鼠的记忆功能
? Optogenetics-induced activation of glutamate receptors improves memory function in mice with Alzheimer’s disease
Ke-Wei Wang,Xiao-Lin Ye,Ting Huang,Xi-Fei Yang,Liang-Yu Zou. Optogenetics-induced activation of glutamate receptors improves memory function in mice with Alzheimer’s disease[J]. Neural Regeneration Research, 2019, 14(12): 2147-2155.
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高膳食脂肪摄入量和帕金森病发病风险的关系:一项meta分析
? Relationship between high dietary fat intake and Parkinson’s disease risk: a meta-analysis
Yan Qu,Xi Chen,Man-Man Xu,Qiang Sun. Relationship between high dietary fat intake and Parkinson’s disease risk: a meta-analysis[J]. Neural Regeneration Research, 2019, 14(12): 2156-2163.
? PDF (1158 KB) ? ( 28 )
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????????原着:脊髓损伤修复保护与再生
姜黄素化合物CNB-001对主动脉阻塞致脊髓缺血的神经保护
? CNB-001 reduces paraplegia in rabbits following spinal cord ischemia
Paul A. Lapchak,Paul D. Boitano,Rene Bombien,Daisy Chou,Margot Knight,Anja Muehle,Mihaela Te Winkel,Ali Khoynezhad. CNB-001 reduces paraplegia in rabbits following spinal cord ischemia[J]. Neural Regeneration Research, 2019, 14(12): 2192-2198.
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