25 results on '"Waxman, Stephen G."'
Search Results
2. A channelopathy contributes to cerebellar dysfunction in a model of multiple sclerosis
3. Gain of function NaV1.7 mutations in idiopathic small fiber neuropathy
4. Neuropathy-associated NaV1.7 variant I228M impairs integrity of dorsal root ganglion neuron axons
5. Gain of function NaV1.7 mutations in idiopathic small fiber neuropathy
6. A sodium channel geneSCN9Apolymorphism that increases nociceptor excitability
7. A novel Nav1.7 mutation producing carbamazepine-responsive erythromelalgia
8. Multiple sodium channel isoforms and mitogen-activated protein kinases are present in painful human neuromas
9. Axonal dysfunction in chronic multiple sclerosis: Meltdown in the membrane
10. Exacerbation of experimental autoimmune encephalomyelitis after withdrawal of phenytoin and carbamazepine
11. Sporadic onset of erythermalgia: A gain-of-function mutation in Nav1.7
12. Erythromelalgia: A hereditary pain syndrome enters the molecular era
13. Nitric oxide and the axonal death cascade
14. Changes of sodium channel expression in experimental painful diabetic neuropathy
15. Sodium channel blockade by antibodies: A new mechanism of neurological disease?
16. Neuropathy-associated NaV1.7 variant I228M impairs integrity of dorsal root ganglion neuron axons.
17. Molecular dissection of the myelinated axon
18. Gain of function NaV1.7 mutations in idiopathic small fiber neuropathy.
19. Na+‐Ca2+ exchanger mediates Ca2+ influx during anoxia in mammalian central nervous system white matter
20. A sodium channel gene SCN9A polymorphism that increases nociceptor excitability.
21. A novel Nav1.7 mutation producing carbamazepine-responsive erythromelalgia.
22. Anoxic injury of mammalian central white matter: Decreased susceptibility in myelin-deficient optic nerve
23. Na+-Ca2+ exchanger mediates Ca2+ influx during anoxia in mammalian central nervous system white matter.
24. Physiological effects of 4-aminopyridine on demyelinated mammalian motor and sensory fibers.
25. Major morbidity related to hyperthermia in multiple sclerosis
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