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Advances in Experimental Medicine and Biology|January 15, 2000
The role of oligodendrocytes and oligodendrocyte progenitors in CNS remyelinationH S Keirstead, W F BlakemoreBrain : a Journal of Neurology|January 1, 1997
Locomotor deficits induced by experimental spinal cord demyelination are abolished by spontaneous remyelinationN D Jeffery, W F BlakemoreJournal of Neurocytology|October 1, 1975
Observations on the interactions of Schwann cells and astrocytes following X-irradiation of neonatal rat spinal cordW F Blakemore, R C PattersonNeuropathology and Applied Neurobiology|August 1, 1990
Pathology of Streptococcal meningitis following intravenous intracisternal and natural routes of infectionA E Williams, W F BlakemoreNeuropathology and Applied Neurobiology|July 13, 2005
Repopulation of oligodendrocyte progenitor cell-depleted tissue in a model of chronic demyelinationA K Foote, W F BlakemoreNeuropathology and Applied Neurobiology|November 1, 1986
Delayed remyelination in rat spinal cord following ethidium bromide injectionD L Graça, W F BlakemoreGlia|January 1, 1991
Remyelination of demyelinated rat axons by transplanted mouse oligodendrocytesA J Crang, W F BlakemoreJournal of Neurocytology|August 1, 1989
The relationship between type-1 astrocytes, Schwann cells and oligodendrocytes following transplantation of glial cell cultures into demyelinating lesions in the adult rat spinal cordW F Blakemore, A J CrangJournal of the Neurological Sciences|September 1, 1985
The use of cultured autologous Schwann cells to remyelinate areas of persistent demyelination in the central nervous systemW F Blakemore, A J CrangTrends in Neurosciences|March 1, 1995
Glial-cell transplantation and plasticity in the O-2A lineage--implications for CNS repairR J Franklin, W F BlakemorePageof 15