By Bradley J. Undem, Daniel Weinreich
Taking a finished process during which all facets of the vagal afferent process are thought of, from the terminals within the visceral tissues to the neural pathways in the important worried process, this broad textual content reports the improvement, neurochemistry, anatomy, biophysics, pharmacology, and body structure of the vagal afferent nerves. The authors current experimental thoughts used to enquire the advance, morphology, electrophysiology and reflex functionality of the vagal afferent nerves, and comprise cutting-edge stories of vagal afferent neurobiology through the various world's top specialists in those fields.
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Additional resources for Advances in Vagal Afferent Neurobiology (Frontiers in Neuroscience (Boca Raton, Fla.).)
Extensive cell movements accompany formation of the otic placode, Dev. , 249, 237, 2002. 20. E. , The olfactory placodes of the zebrafish form by convergence of cellular fields at the edge of the neural plate, Development, 127, 3645, 2000. 21. Wawersik, S. , Vertebrate eye development as modeled in Drosophila, Hum. Mol. , 9, 917, 2000. 22. J. , Characterization of mouse Dach2, a homologue of Drosophila dachshund, Mech. , 102, 169, 2001. 23. L. , Isolation of three zebrafish dachshund homologues and their expression in sensory organs, the central nervous system and pectoral fin buds, Mech.
However, in many or most species, discrete domains of thickened ectoderm are found that ultimately give rise to two or more placodes (the ectoderm in between the final placodes usually seems to become thin). This is certainly the case for the epibranchial placodes, which form the special visceral (gustatory) and general visceral sensory neurons in the geniculate, petrosal and nodose ganglia. 26,27 Data from both zebrafish and chick embryos support the origin of the epibranchial placodes from a molecularly and morphologically distinct region of ectoderm that includes the otic placode.
J. Comp. , 81, 147, 1944. 6. , Experimental analysis of the dual origin of the trigeminal ganglion in the chick embryo, J. Exp. , 148, 91, 1961. 7. , A radioautographic study of the migration and fate of cranial neural crest cells in the chick embryo, Anat. , 156, 143, 1966. 8. H. , Neural crest and placodal contributions in the development of the glossopharyngeal-vagal complex in the chick, Anat. , 196, 71, 1980. 9. , Richerche sperimentali sulla determinazione del placode otico nell'embrione di pollo, Accad.
Advances in Vagal Afferent Neurobiology (Frontiers in Neuroscience (Boca Raton, Fla.).) by Bradley J. Undem, Daniel Weinreich