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Neurochemical Research|August 25, 2001
Postmortem degradation of N-acetyl aspartate and N-acetyl aspartylglutamate: an HPLC analysis of different rat CNS regionsJ Battistuta, C Bjartmar, B D TrappRevue Neurologique|May 1, 1996
Molecular pathogenesis of peripheral neuropathyB D Trapp, C Haney, X YinThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 1, 1988
Axonal regulation of myelin protein mRNA levels in actively myelinating Schwann cellsB D Trapp, P Hauer, G LemkeCurrent Opinion in Neurology|September 28, 1999
Axonal pathology in multiple sclerosis: relationship to neurologic disabilityB D Trapp, R Ransohoff, R RudickJournal of Neuropathology and Experimental Neurology|November 24, 1999
NG2+ glial cells: a novel glial cell population in the adult brainA Nishiyama, A Chang, B D TrappNeurobiology|October 1, 1975
Light and electron microscopic examination of isolated neurons, astrocytes and oligodendrocytesB D Trapp, B Dwyer, J BernsohnJournal of Neurocytology|March 30, 2000
Axonal pathology in myelin disordersC Bjartmar, X Yin, B D TrappJournal of Neuroscience Research|October 27, 1998
Demyelination in the central nervous system mediated by an anti-oligodendrocyte antibodyL Zhou, B D Trapp, R H MillerJournal of the Neurological Sciences|February 1, 2003
Axonal loss in the pathology of MS: consequences for understanding the progressive phase of the diseaseC Bjartmar, J R Wujek, B D TrappThe Journal of Cell Biology|August 1, 1984
Immunocytochemical studies of quaking mice support a role for the myelin-associated glycoprotein in forming and maintaining the periaxonal space and periaxonal cytoplasmic collar of myelinating Schwann cellsB D Trapp, R H Quarles, K SuzukiPageof 12