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Journal of Rehabilitation Research and Development|April 27, 2001
Voltage-gated sodium channels and the molecular pathogenesis of pain: a reviewS G Waxman, T R Cummins, S D Dib-Hajj, et al.
Journal of Neurophysiology|December 6, 2002
Characterization and developmental changes of Na+ currents of petrosal neurons with projections to the carotid bodyTheodore R Cummins, Sulayman D Dib-Hajj, Stephen G Waxman, et al.
FEBS Letters|April 7, 2005
Nav1.6 channels generate resurgent sodium currents in spinal sensory neuronsTheodore R Cummins, Sulayman D Dib-Hajj, Raimund I Herzog, et al.
Exposome|March 27, 2026
Scaling sensor metadata extraction for exposure health using LLMsFatemeh Shah-Mohammadi, Sunho Im, Julio C Facelli, et al.
Nano Letters|May 15, 2013
Iron sulfide (FeS) nanotubes using sulfurization of hematite nanowiresDustin R Cummins, Harry B Russell, Jacek B Jasinski, et al.
Channels (Austin, Tex.)|July 28, 2009
Alternative splicing of Na(V)1.7 exon 5 increases the impact of the painful PEPD mutant channel I1461TBrian W Jarecki, Patrick L Sheets, Yucheng Xiao, et al.
Journal of Neurophysiology|April 12, 2000
Nitric oxide is an autocrine regulator of Na(+) currents in axotomized C-type DRG neuronsM Renganathan, T R Cummins, W N Hormuzdiar, et al.
Muscle & Nerve|August 24, 1999
Sodium channels, excitability of primary sensory neurons, and the molecular basis of painS G Waxman, T R Cummins, S Dib-Hajj, et al.
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