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Journal of Neurocytology|May 1, 1993
The reconstruction of an astrocytic environment in glia-deficient areas of white matterR J Franklin, A J Crang, W F BlakemoreThe European Journal of Neuroscience|October 1, 1993
In vitro and in vivo analysis of a rat bipotential O-2A progenitor cell line containing the temperature-sensitive mutant gene of the SV40 large T antigenS C Barnett, R J Franklin, W F BlakemoreDevelopmental Neuroscience|January 1, 1992
Type 1 astrocytes fail to inhibit Schwann cell remyelination of CNS axons in the absence of cells of the O-2A lineageR J Franklin, A J Crang, W F BlakemoreJournal of Neurology|December 1, 1994
Repair of demyelinated lesions by glial cell transplantationW F Blakemore, R J Franklin, A J CrangJournal of Clinical Neuroscience : Official Journal of the Neurosurgical Society of Australasia|October 1, 1995
A rat spinal subarachnoid continuous infusion deviceE P Guazzo, R J Franklin, W F BlakemoreBrain Pathology (Zurich, Switzerland)|October 1, 1995
The use of transplanted glial cells to reconstruct glial environments in the CNSW F Blakemore, N J Olby, R J FranklinNovartis Foundation Symposium|December 29, 2000
Remyelinating the demyelinated CNSW F Blakemore, P M Smith, R J FranklinJournal of Neuroscience Research|May 23, 2000
Schwann cell remyelination is restricted to astrocyte-deficient areas after transplantation into demyelinated adult rat brainS A Shields, W F Blakemore, R J FranklinNeuropathology and Applied Neurobiology|February 1, 1997
The effects of the growth factor-antagonist, trapidil, on remyelination in the CNSJ S McKay, W F Blakemore, R J FranklinExperimental Neurology|February 1, 1996
Transplanted CG4 cells (an oligodendrocyte progenitor cell line) survive, migrate, and contribute to repair of areas of demyelination in X-irradiated and damaged spinal cord but not in normal spinal cordR J Franklin, S A Bayley, W F BlakemorePageof 19