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24 results on '"Martha S. Windrem"'

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1. Cell-intrinsic glial pathology is conserved across human and murine models of Huntington's disease

2. JC Virus Propagation is Potentiated by Glial Replication and Accelerated by Demyelination-Associated Glial Proliferation

3. Human Glial Progenitor Cells Effectively Remyelinate the Demyelinated Adult Brain

4. Modeling cognition and disease using human glial chimeric mice

5. Human iPSC Glial Mouse Chimeras Reveal Glial Contributions to Schizophrenia

6. Human glia can both induce and rescue aspects of disease phenotype in Huntington disease

7. CD140a identifies a population of highly myelinogenic, migration-competent, and efficiently engrafting human oligodendrocyte progenitor cells

8. Fetal and adult human oligodendrocyte progenitor cell isolates myelinate the congenitally dysmyelinated brain

9. A competitive advantage by neonatally engrafted human glial progenitors yields mice whose brains are chimeric for human glia

10. Glial Progenitor Cell–Based Treatment and Modeling of Neurological Disease

11. Defective Glial Maturation in Vanishing White Matter Disease

12. Fate determination of adult human glial progenitor cells

13. Thalamic Ablations and Neocortical Development: Alterations of Cortical Cytoarchitecture and Cell Number

14. Stem cell-based strategies for treating pediatric disorders of myelin

15. Neonatal chimerization with human glial progenitor cells can both remyelinate and rescue the otherwise lethally hypomyelinated shiverer mouse

16. Progenitor Cell-Based Myelination as a Model for Cell-Based Therapy of the Central Nervous System

17. Cell replacement therapy in neurological disease

18. Progenitor Cells of the Adult Human Subcortical White Matter

19. Telomerase immortalization of neuronally restricted progenitor cells derived from the human fetal spinal cord

20. Progenitor cells derived from the adult human subcortical white matter disperse and differentiate as oligodendrocytes within demyelinated lesions of the rat brain

21. Control of cell number in the developing visual system. II. Effects of partial tectal ablation

22. Control of Cell Number in the Developing Visual System. III. Effects of Visual Cortex Ablation

23. Control of cell number in the developing neocortex. II. Effects of corpus callosum section

24. Increased cell number in the adult hamster retinal ganglion cell layer after early removal of one eye

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