1Therapeutic effectiveness of a single exercise session combined with WalkAide functional electrical stimulation in post-stroke patients: a crossover design studyViviane Rostirola Elsner,Lucieli Trevizol,Isadora de Leon,Marcos da Silva,Thayná Weiss,Milena Braga,Daniela Pochmann,Amanda Stolzenberg Blembeel,Caroline Dani,Elenice BoggioBrain Injury and Neural Regeneration805-812
2Enriched environment boosts the post-stroke recovery of neurological function by promoting autophagyYi-Hao Deng,Ling-Ling Dong,Yong-Jie Zhang,Xiao-Ming Zhao,Hong-Yun HeBrain Injury and Neural Regeneration813-819
3Surgical intervention combined with weight-bearing walking training improves neurological recoveries in 320 patients with clinically complete spinal cord injury: a prospective self-controlled studyYansheng Liu,Jia-Xin Xie,Fang Niu,Zhexi Xu,Pengju Tan,Caihong Shen,Hongkun Gao,Song Liu,Zhengwen Ma,Kwok-Fai So,Wutian Wu,Chen Chen,Sujuan Gao,Xiao-Ming Xu,Hui ZhuSpinal Cord Injury and Neural Regeneration820-829
4Recognition of moyamoya disease and its hemorrhagic risk using deep learning algorithms: sourced from retrospective studiesYu Lei,Xin Zhang,Wei Ni,Heng Yang,Jia-Bin Su,Bin Xu,Liang Chen,Jin-Hua Yu,Yu-Xiang Gu,Ying MaoBrain Injury and Neural Regeneration830-835
5D-serine reduces memory impairment and neuronal damage induced by chronic lead exposureJian-Zhu Bo,Ling Xue,Shuang Li,Jing-Wen Yin,Zheng-Yao Li,Xi Wang,Jun-Feng Wang,Yan-Shu ZhangBrain Injury and Neural Regeneration836-841
6An integrative multivariate approach for predicting functional recovery using magnetic resonance imaging parameters in a translational pig ischemic stroke modelErin E. Kaiser,J.C. Poythress,Kelly M. Scheulin,Brian J. Jurgielewicz,Nicole A. Lazar,Cheolwoo Park,Steven L. Stice,Jeongyoun Ahn,Franklin D. WestBrain Injury and Neural Regeneration842-850
7AAV8 transduction capacity is reduced by prior exposure to endosome-like pH conditionsJeffrey A. Lowell,Kar Men Mah,John L. Bixby,Vance P. LemmonSpinal Cord Injury and Neural Regeneration851-855
8Secondary release of the peripheral nerve with autologous fat derivates benefits for functional and sensory recoveryNatalia E. Krzesniak,Anna Sarnowska,Anna Figiel-Dabrowska,Katarzyna Osiak,Krystyna Domanska-Janik,Bart?omiej H. NoszczykPeripheral Nerve Injury and Neural Regeneration856-864
9Identification of four differentially expressed genes associated with acute and chronic spinal cord injury based on bioinformatics dataSu-Ping Niu,Ya-Jun Zhang,Na Han,Xiao-Feng Yin,Dian-Ying Zhang,Yu-Hui KouSpinal Cord Injury and Neural Regeneration865-870
10Functional recovery after peripheral nerve injury via sustained growth factor delivery from mineral-coated microparticlesDaniel J. Hellenbrand,Clayton L. Haldeman,Jae-Sung Lee,Angela G. Gableman,Elena K. Dai,Stephen D. Ortmann,Jerrod C. Gotchy,Kierra K. Miller,Adrianna M. Doucas,Nicole C. Nowak,William L. Murphy,Amgad S. HannaPeripheral Nerve Injury and Neural Regeneration871-877
11Bioinformatic analysis of cytokine expression in the proximal and distal nerve stumps after peripheral nerve injuryXiao-Qing Cheng,Wen-Jing Xu,Xiao Ding,Gong-Hai Han,Shuai Wei,Ping Liu,Hao-Ye Meng,Ai-Jia Shang,Yu Wang,Ai-Yuan WangPeripheral Nerve Injury and Neural Regeneration878-884
12Possible role of glial cell line-derived neurotrophic factor for predicting cognitive impairment in Parkinson's disease: a case-control studyMing-Yu Shi,Cheng-Cheng Ma,Fang-Fang Chen,Xiao-Yu Zhou,Xue Li,Chuan-Xi Tang,Lin Zhang,Dian-Shuai GaoNeurodegenerative Diseases and Neural Regeneration885-892
13Therapeutic potential of dental pulp stem cell transplantation in a rat model of Alzheimer 's diseaseXue-Mei Zhang,Yuan-Jiao Ouyang,Bing-Qian Yu,Wei Li,Mei-Yu Yu,Jin-Yue Li,Zhuo-Min Jiao,Dan Yang,Na Li,Ying Shi,Yun-Yun Xu,Zhi-Jun He,Duo Wang,Hui Yue,Jin FuNeurodegenerative Diseases and Neural Regeneration893-898
14Pannexin 1, a large-pore membrane channel,contributes to hypotonicity-induced ATP release in Schwann cellsZhong-Ya Wei,Hui-Lin Qu,Yu-Juan Dai,Qian Wang,Zhuo-Min Ling,Wen-Feng Su,Ya-Yu Zhao,Wei-Xing Shen,Gang ChenPeripheral Nerve Injury and Neural Regeneration899-904
15Effects of bilateral subthalamic nucleus deep brain stimulation on motor symptoms in Parkinson's disease: a retrospective cohort studyGuo-Xiong Cheng,Shu-Bin Yin,Ying-Hao Yang,Yuan-Hu Hu,Chih-Yang Huang,Qian-Ming Yao,Wei-Jen TingNeurodegenerative Diseases and Neural Regeneration905-909
16Neuropsychological features of progranulin-associated frontotemporal dementia: a nested case-control studyMarisa Lima,Miguel Tábuas-Pereira,Diana Duro,Jo?o Dur?es,Daniela Vieira,Inês Baldeiras,Maria Rosário Almeida,Isabel SantanaNeurodegenerative Diseases and Neural Regeneration910-915
17Preventive electroacupuncture reduces cognitive deficits in a rat model of D-galactose-induced agingChao-Chao Yu,Chuan He,Yan-Jun Du,Shan Gao,Yuan-Fang Lin,Shu-Qin Wang,Li Wang,Jia Wang,Xue-Song Wang,Tao Jiang,Li-Hong KongNeurodegenerative Diseases and Neural Regeneration916-923
18Recovery of gait and injured corticoreticulospinal tracts in a patient with diffuse axonal injurySung Ho Jang,You Sung SeoImaging in Neural Regeneration924-925
19Impact of pediatric traumatic brain injury on hippocampal neurogenesisMariam Rizk,Justin Vu,Zhi ZhangReviews926-933
20Peptidylarginine deiminases and extracellular vesicles: prospective drug targets and biomarkers in central nervous system diseases and repairSigrun LangeReviews934-938