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| 1. | Title: Expression Profile of PTPIP51 in Mouse Brain
Author(s): Koch P, Viard M, Stenzinger A, et al. Source: JOURNAL OF COMPARATIVE NEUROLOGY Volume: 517 Issue: 6 Pages: 892-905 Published: DEC 20 2009 |
| 2. | Title: Cerebellum-Related Characteristics of Scn8a-Mutant Mice
Author(s): Chen KJ, Godfrey DA, Ilyas O, et al. Source: CEREBELLUM Volume: 8 Issue: 3 Pages: 192-201 Published: SEP 2009 |
| 3. | Title: FGF14 N-terminal splice variants differentially modulate Nav1.2 and Nav1.6-encoded sodium channels
Author(s): Laezza F, Lampert A, Kozel MA, et al. Source: MOLECULAR AND CELLULAR NEUROSCIENCE Volume: 42 Issue: 2 Pages: 90-101 Published: SEP 2009 |
| 4. | Title: Transcriptional and Electrophysiological Maturation of Neocortical Fast-Spiking GABAergic Interneurons
Author(s): Okaty BW, Miller MN, Sugino K, et al. Source: JOURNAL OF NEUROSCIENCE Volume: 29 Issue: 21 Pages: 7040-7052 Published: MAY 27 2009 |
| 5. | Title: Heterozygous mutations of the voltage-gated sodium channel SCN8A are associated with spike-wave discharges and absence epilepsy in mice
Author(s): Papale LA, Beyer B, Jones JM, et al. Source: HUMAN MOLECULAR GENETICS Volume: 18 Issue: 9 Pages: 1633-1641 Published: MAY 1 2009 |
| 6. | Title: Nothing can be coincidence: synaptic inhibition and plasticity in the cerebellar nuclei
Author(s): Pugh JR, Raman IM Source: TRENDS IN NEUROSCIENCES Volume: 32 Issue: 3 Pages: 170-177 Published: MAR 2009 |
| 7. | Title: The ataxia3 Mutation in the N-Terminal Cytoplasmic Domain of Sodium Channel Na(v)1.6 Disrupts Intracellular Trafficking
Author(s): Sharkey LM, Cheng XY, Drews V, et al. Source: JOURNAL OF NEUROSCIENCE Volume: 29 Issue: 9 Pages: 2733-2741 Published: MAR 4 2009 |
| 8. | Title: Axonal Na+ Channels Ensure Fast Spike Activation and Back-Propagation in Cerebellar Granule Cells
Author(s): Diwakar S, Magistretti J, Goldfarb M, et al. Source: JOURNAL OF NEUROPHYSIOLOGY Volume: 101 Issue: 2 Pages: 519-532 Published: FEB 2009 |
| 9. | Title: Increased persistent sodium current determines cortical hyperexcitability in a genetic model of amyotrophic lateral sclerosis
Author(s): Pieri M, Carunchio I, Curcio L, et al. Source: EXPERIMENTAL NEUROLOGY Volume: 215 Issue: 2 Pages: 368-379 Published: FEB 2009 |
| 10. | Title: FGF14 regulates the intrinsic excitability of cerebellar Purkinje neurons
Author(s): Shakkottai VG, Xiao M, Xu L, et al. Source: NEUROBIOLOGY OF DISEASE Volume: 33 Issue: 1 Pages: 81-88 Published: JAN 2009 |