Akiko Nishiyama

Affiliations: 
Physiology and Neurobiology University of Connecticut, Storrs, CT, United States 
Area:
Neurobiology Biology, Neuroscience Biology
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"Akiko Nishiyama"
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Publications

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Serwanski DR, Rasmussen AL, Brunquell CB, et al. (2018) Sequential Contribution of Parenchymal and Neural Stem Cell-Derived Oligodendrocyte Precursor Cells toward Remyelination. Neuroglia (Basel, Switzerland). 1: 91-105
Gotoh H, Wood WM, Patel KD, et al. (2018) NG2 expression in NG2 glia is regulated by binding of SoxE and bHLH transcription factors to a Cspg4 intronic enhancer. Glia
Sherafat A, Hill RA, Nishiyama A. (2018) Organotypic Slice Cultures to Study Oligodendrocyte Proliferation, Fate, and Myelination. Methods in Molecular Biology (Clifton, N.J.). 1791: 145-156
Zuo H, Wood WM, Sherafat A, et al. (2018) Age-dependent decline in fate switch from NG2 cells to astrocytes after Olig2 deletion. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Hesp ZC, Yoseph RY, Suzuki R, et al. (2017) Proliferating NG2 cell-dependent angiogenesis and scar formation alter axon growth and functional recovery after spinal cord injury in mice. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Serwanski DR, Jukkola P, Nishiyama A. (2016) Heterogeneity of astrocyte and NG2 cell insertion at the node of Ranvier. The Journal of Comparative Neurology
Nishiyama A, Boshans L, Goncalves CM, et al. (2015) Lineage, fate, and fate potential of NG2-glia. Brain Research
Nishiyama A, Lee A, Brunquell CB. (2015) NG2 (Cspg4): Cell Surface Proteoglycan on Oligodendrocyte Progenitor Cells in the Developing and Mature Nervous System Neural Surface Antigens: From Basic Biology Towards Biomedical Applications. 103-112
Hill RA, Patel KD, Goncalves CM, et al. (2014) Modulation of oligodendrocyte generation during a critical temporal window after NG2 cell division. Nature Neuroscience. 17: 1518-27
Galvao RP, Kasina A, McNeill RS, et al. (2014) Transformation of quiescent adult oligodendrocyte precursor cells into malignant glioma through a multistep reactivation process. Proceedings of the National Academy of Sciences of the United States of America. 111: E4214-23
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