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Cell Reports
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July 7, 2021
Cell-intrinsic glial pathology is conserved across human and murine models of Huntington's disease
Abdellatif Benraiss, John N Mariani, Mikhail Osipovitch, et al.
Nature Medicine
|
January 2, 2004
Fetal and adult human oligodendrocyte progenitor cell isolates myelinate the congenitally dysmyelinated brain
Martha S Windrem, Marta C Nunes, William K Rashbaum, et al.
Cell Reports
|
May 21, 2020
Human Glial Progenitor Cells Effectively Remyelinate the Demyelinated Adult Brain
Martha S Windrem, Steven J Schanz, Lisa Zou, et al.
American Journal of Human Genetics
|
April 4, 2017
Modeling the Mutational and Phenotypic Landscapes of Pelizaeus-Merzbacher Disease with Human iPSC-Derived Oligodendrocytes
Zachary S Nevin, Daniel C Factor, Robert T Karl, et al.
The Journal of Clinical Investigation
|
November 18, 2014
Human glial chimeric mice reveal astrocytic dependence of JC virus infection
Yoichi Kondo, Martha S Windrem, Lisa Zou, et al.
Cell Stem Cell
|
June 5, 2008
Neonatal chimerization with human glial progenitor cells can both remyelinate and rescue the otherwise lethally hypomyelinated shiverer mouse
Martha S Windrem, Steven J Schanz, Min Guo, et al.
Cell Reports
|
June 27, 2019
Dysregulated Glial Differentiation in Schizophrenia May Be Relieved by Suppression of SMAD4- and REST-Dependent Signaling
Zhengshan Liu, Mikhail Osipovitch, Abdellatif Benraiss, et al.
Journal of Neuropathology and Experimental Neurology
|
December 16, 2010
Defective glial maturation in vanishing white matter disease
Marianna Bugiani, Ilja Boor, Barbara van Kollenburg, et al.
Cell Stem Cell
|
December 18, 2018
Human ESC-Derived Chimeric Mouse Models of Huntington's Disease Reveal Cell-Intrinsic Defects in Glial Progenitor Cell Differentiation
Mikhail Osipovitch, Andrea Asenjo Martinez, John N Mariani, et al.
Cell Stem Cell
|
July 25, 2017
Human iPSC Glial Mouse Chimeras Reveal Glial Contributions to Schizophrenia
Martha S Windrem, Mikhail Osipovitch, Zhengshan Liu, et al.
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Search research articles
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Showing results (11-20 of 22) with videos related to
Sort By:
Page
of 3
Cell Reports
|
July 7, 2021
Cell-intrinsic glial pathology is conserved across human and murine models of Huntington's disease
Abdellatif Benraiss, John N Mariani, Mikhail Osipovitch, et al.
Nature Medicine
|
January 2, 2004
Fetal and adult human oligodendrocyte progenitor cell isolates myelinate the congenitally dysmyelinated brain
Martha S Windrem, Marta C Nunes, William K Rashbaum, et al.
Cell Reports
|
May 21, 2020
Human Glial Progenitor Cells Effectively Remyelinate the Demyelinated Adult Brain
Martha S Windrem, Steven J Schanz, Lisa Zou, et al.
American Journal of Human Genetics
|
April 4, 2017
Modeling the Mutational and Phenotypic Landscapes of Pelizaeus-Merzbacher Disease with Human iPSC-Derived Oligodendrocytes
Zachary S Nevin, Daniel C Factor, Robert T Karl, et al.
The Journal of Clinical Investigation
|
November 18, 2014
Human glial chimeric mice reveal astrocytic dependence of JC virus infection
Yoichi Kondo, Martha S Windrem, Lisa Zou, et al.
Cell Stem Cell
|
June 5, 2008
Neonatal chimerization with human glial progenitor cells can both remyelinate and rescue the otherwise lethally hypomyelinated shiverer mouse
Martha S Windrem, Steven J Schanz, Min Guo, et al.
Cell Reports
|
June 27, 2019
Dysregulated Glial Differentiation in Schizophrenia May Be Relieved by Suppression of SMAD4- and REST-Dependent Signaling
Zhengshan Liu, Mikhail Osipovitch, Abdellatif Benraiss, et al.
Journal of Neuropathology and Experimental Neurology
|
December 16, 2010
Defective glial maturation in vanishing white matter disease
Marianna Bugiani, Ilja Boor, Barbara van Kollenburg, et al.
Cell Stem Cell
|
December 18, 2018
Human ESC-Derived Chimeric Mouse Models of Huntington's Disease Reveal Cell-Intrinsic Defects in Glial Progenitor Cell Differentiation
Mikhail Osipovitch, Andrea Asenjo Martinez, John N Mariani, et al.
Cell Stem Cell
|
July 25, 2017
Human iPSC Glial Mouse Chimeras Reveal Glial Contributions to Schizophrenia
Martha S Windrem, Mikhail Osipovitch, Zhengshan Liu, et al.
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