18 results on '"Pincon-Raymond M"'
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2. Electrophysiological and Morphological Studies of a Motor Nerve in `Motor Endplate Disease' of the Mouse
3. Acetylcholinesterase and Nicotinic Acetylcholine Receptor Expression Diverge in Muscular Dysgenic Mice Lacking the L-Type Calcium Channel
4. The large intracytoplasmic loop of the glucose transporter GLUT2 is involved in glucose signaling in hepatic cells
5. Neuronal cell adhesion molecules and cytotactin are colocalized at the node of Ranvier.
6. Ontogenesis and localization of Ca2+ channels in mammalian skeletal muscle in culture and role in excitation-contraction coupling.
7. Excitation-contraction uncoupling in the developing skeletal muscle of the muscular dysgenesis mouse embryo
8. Regulatory sequences responsible for the restriction of apolipoprotein A-IV gene expression in intestine villus enterocytes
9. Nerve and muscle development in paralysé mutant mice
10. Unusual organization of desmin intermediate filaments in muscular dysgenesis and TTX-treated myotubes
11. The electrophysiological expression of Ca 2+ channels and of apamin sensitive Ca 2+ activated K + channels is abolished in skeletal muscle cells from mice with muscular dysgenesis
12. Restoration of normal ultrastructure after expression of the a1 subunit of the L-type Ca^2^+ channel in dysgenic myotubes
13. The cellular prion protein PrPc is expressed in human enterocytes in cell-cell junctional domains.
14. Neuromuscular development in the avian paralytic mutant crooked neck dwarf (cn/cn): further evidence for the role of neuromuscular activity in motoneuron survival.
15. Muscle fibers from dysgenic mouse in vivo lack a surface component of peripheral couplings.
16. Impairment of T lymphocyte functions in mice with motor end-plate disease.
17. The development of motoneurons in the embryonic spinal cord of the mouse mutant, muscular dysgenesis (mdg/mdg): survival, morphology, and biochemical differentiation.
18. Tissue-specific processing and polarized compartmentalization of clone-produced cholinesterase in microinjected Xenopus oocytes.
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