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Contrasting neuropathology and functional recovery after spinal cord injury in developing and adult rats Journal article
Neuroscience Bulletin, 2013,Volume: 29,Issue: 4,Page: 509-516
Authors:  Yuan Q.;  Su H.;  Chiu K.;  Wu W.;  Lin Z.-X.
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functional recovery  neonatal  rat  regeneration  spinal cord injury  
Computation of the run-length percentiles of CUSUM control charts under changes in variances Journal article
Journal of Statistical Computation and Simulation, 2013,Volume: 83,Issue: 7,Page: 1238-1251
Authors:  Shu L.;  Huang W.;  Su Y.;  Tsui K.-L.
Favorite  |  View/Download:2/0  |  Submit date:2019/02/14
Average Run Length  Integral Equation  Integration Kernel  Statistical Process Control  Variance  
Ventral root re-implantation is better than peripheral nerve transplantation for motoneuron survival and regeneration after spinal root avulsion injury Journal article
BMC Surgery, 2013,Volume: 13,Issue: 1
Authors:  Su H.;  Yuan Q.;  Qin D.;  Yang X.;  Wong W.-M.;  So K.-F.;  Wu W.
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Avulsion  Motoneuron survival and regeneration  Peripheral nerve graft transplantation  Ventral root re-implantation  
Minocycline inhibited the pro-apoptotic effect of microglia on neural progenitor cells and protected their neuronal differentiation in vitro Journal article
Neuroscience Letters, 2013,Volume: 542,Page: 30-36
Authors:  Liu X.;  Su H.;  Chu T.-H.;  Guo A.;  Wu W.
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Microglia  Minocycline  Neural progenitor cells  Neuronal differentiation  
Magnetic anisotropic energy gap and low-energy spin wave excitation in the antiferromagnetic block phase of K 2 Fe 4 Se 5 Journal article
Physical Review B - Condensed Matter and Materials Physics, 2013,Volume: 87,Issue: 14
Authors:  Xiao Y.;  Nandi S.;  Su Y.;  Price S.;  Li H.-F.;  Fu Z.;  Jin W.;  Piovano A.;  Ivanov A.;  Schmalzl K.;  Schmidt W.;  Chatterji T.;  Wolf T.;  Bruckel T.
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Nanofiber scaffolds facilitate functional regeneration of peripheral nerve injury Journal article
Nanomedicine: Nanotechnology, Biology, and Medicine, 2013,Volume: 9,Issue: 3,Page: 305-315
Authors:  Zhan X.;  Gao M.;  Jiang Y.;  Zhang W.;  Wong W.M.;  Yuan Q.;  Su H.;  Kang X.;  Dai X.;  Zhang W.;  Guo J.;  Wu W.
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Axonal regeneration  Nanofiber scaffold  Peripheral nerve injury  Remyelination  Self-assembling peptide  
Existence of different types of senile plaques between brain and spinal cord of TgCRND8 mice Journal article
Neurochemistry International, 2013,Volume: 62,Issue: 3,Page: 211-220
Authors:  Yuan Q.;  Su H.;  Zhang Y.;  Chau W.H.;  Ng C.T.;  Wu W.;  Lin Z.-X.
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Alzheimer's disease  Senile plaques  Spinal cord and glial reaction  TgCRND8 mice  
Behavioral Stress Fails to Accelerate the Onset and Progression of Plaque Pathology in the Brain of a Mouse Model of Alzheimer's Disease Journal article
PLoS ONE, 2013,Volume: 8,Issue: 1
Authors:  Yuan Q.;  Su H.;  Chau W.H.;  Toa Ng C.;  Huang J.-D.;  Wu W.;  Lin Z.-X.
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Generation of integration-free neural progenitor cells from cells in human urine Journal article
Nature Methods, 2013,Volume: 10,Issue: 1,Page: 84
Authors:  Wang L.;  Wang L.;  Huang W.;  Su H.;  Xue Y.;  Su Z.;  Liao B.;  Wang H.;  Bao X.;  Qin D.;  He J.;  Wu W.;  So K.F.;  Pan G.;  Pei D.
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Amyloid pathology in spinal cord of the transgenic alzheimer's disease mice is correlated to the corticospinal tract pathway Journal article
Journal of Alzheimer's Disease, 2013,Volume: 35,Issue: 4,Page: 675-685
Authors:  Yuan Q.;  Su H.;  Zhang Y.;  Chau W.H.;  Ng C.T.;  Song Y.-Q.;  Huang J.-D.;  Wu W.;  Lin Z.-X.
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Amyloid-β formation  axonal transport  spinal cord  TgCRND8 mice