Advances in Vagal Afferent Neurobiology (Frontiers in by Bradley J. Undem, Daniel Weinreich

By Bradley J. Undem, Daniel Weinreich

Taking a accomplished technique during which all points of the vagal afferent process are thought of, from the terminals within the visceral tissues to the neural pathways in the important anxious approach, this wide textual content experiences the improvement, neurochemistry, anatomy, biophysics, pharmacology, and body structure of the vagal afferent nerves. The authors current experimental innovations used to enquire the advance, morphology, electrophysiology and reflex functionality of the vagal afferent nerves, and contain cutting-edge studies of vagal afferent neurobiology by means of the various world's top specialists in those fields.

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Extra resources for Advances in Vagal Afferent Neurobiology (Frontiers in Neuroscience (Boca Raton, Fla.).)

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1 protein in restricted populations of neural crest cells and pharyngeal ectoderm, Dev. , 195, 15, 1992. 54. , 9, 108, 1995. 55. K. , Induction of the neural crest: a multigene process, Nat. Rev. , 3, 453, 2002. 56. Mayor, R. , 305, 203, 2001. 57. , Mechanisms of early neural crest development: from cell specification to migration, Int. Rev. , 200, 143, 2000. 58. LaBonne, C. , Molecular mechanisms of neural crest formation, Annu. Rev. Cell Dev. , 15, 81, 1999. 59. S. , Neural crest specification: migrating into genomics, Nat.

25. , Mardon, G. , Cloning and expression of medaka Dachshund, Mech. , 112, 203, 2002. 26. Schlosser, G. , Development of neurogenic placodes in Xenopus laevis, J. Comp. , 418, 121, 2000. 27. , Development and evolution of lateral line placodes in amphibians. I. Development, Zoology, 105, 119, 2002. 28. S. , Zebrafish foxi1 mediates otic placode formation and jaw development, Development, 130, 929, 2003. 29. A. , The zebrafish forkhead transcription factor Foxi1 specifies epibranchial placode-derived sensory neurons, Development, 130, 2669, 2003.

5). 1 Proneural Genes and Notch Signaling in Neurogenesis: A Brief Outline Before discussing the genes currently known to be involved in neurogenesis within the epibranchial placodes, a brief introduction to the general classes of genes that control neurogenesis is required. In vertebrates and in Drosophila, where they were first discovered, the expression of proneural basic helix-loop-helix (bHLH) transcription factors bestows neuronal potential and specifies the identity of neural progenitor cells (reviewed in Reference 35).

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