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Pain|September 4, 2007
The roles of sodium channels in nociception: Implications for mechanisms of painTheodore R Cummins, Patrick L Sheets, Stephen G WaxmanAdvances in Genetics|February 3, 2009
Genetics and molecular pathophysiology of Na(v)1.7-related pain syndromesSulayman D Dib-Hajj, Yong Yang, Stephen G WaxmanJournal of Neuroscience Research|October 31, 2002
Primary motor neurons fail to up-regulate voltage-gated sodium channel Na(v)1.3/brain type III following axotomy resulting from spinal cord injuryBryan C Hains, Joel A Black, Stephen G WaxmanPharmacological Reviews|December 6, 2003
International Union of Pharmacology. XXXIX. Compendium of voltage-gated ion channels: sodium channelsWilliam A Catterall, Alan L Goldin, Stephen G Waxman, et al.Trends in Pharmacological Sciences|October 20, 2004
Na+ channel expression along axons in multiple sclerosis and its modelsStephen G Waxman, Matthew J Craner, Joel A BlackMuscle & Nerve|July 23, 2003
Noninactivating, tetrodotoxin-sensitive Na+ conductance in peripheral axonsHajime A Tokuno, Jeffery D Kocsis, Stephen G WaxmanJournal of Neurophysiology|February 17, 2006
Alterations in burst firing of thalamic VPL neurons and reversal by Na(v)1.3 antisense after spinal cord injuryBryan C Hains, Carl Y Saab, Stephen G WaxmanPharmacological Reviews|December 31, 2005
International Union of Pharmacology. XLVII. Nomenclature and structure-function relationships of voltage-gated sodium channelsWilliam A Catterall, Alan L Goldin, Stephen G WaxmanBrain : a Journal of Neurology|March 16, 2006
Remyelination of dorsal column axons by endogenous Schwann cells restores the normal pattern of Nav1.6 and Kv1.2 at nodes of RanvierJoel A Black, Stephen G Waxman, Kenneth J SmithTrends in Cell Biology|January 1, 2025
Sodium channels in non-excitable cells: powerful actions and therapeutic targets beyond Hodgkin and HuxleyDmytro V Vasylyev, Chuan-Ju Liu, Stephen G WaxmanPageof 42