By Giacomo Zaccone, Ernest Cutz, Dirk Adriaensen
This publication offers a accomplished and updated account of the knowledge to be had at the morphological, physiological and evolutionary elements of specialised cells allotted in the epithelia of the airlines within the vertebrates. loads of paintings has been performed at the mobile and molecular biology of those cells that are considered as as oxygen receptor neuroepithelial cells. those chemoreceptors which have been conserved all through evolution have neuroendocrine capabilities wearing their signs to the imperative frightened system.
The chemoreceptor cells are sensors which observe the sign alterations within the exterior and inner environments, and play a key position within the survival of assorted species. reports addressed to the chemoreceptor mobile structures within the airlines are of significant value for investigating their reaction to alterations within the oxygen and carbon dioxide concentrations within the setting because the way forward for the planet earth is being threatened by means of worldwide warming and weather change.
Praise for the book:
…This quantity will be of specific curiosity to researchers who're desirous about the evolution of vertebrate breathing keep an eye on more often than not and the rules of air flow in nonmammalian vertebrates specifically. ―Wayne L. Silver, Wake wooded area college, in The Quarterly evaluate of Biology, quantity eighty five, quantity 2
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Extra resources for Airway Chemoreceptors in Vertebrates
685-707. K. 1992. Afferent inputs associated with cardioventilatory control in fish. In: Fish Physiology, Vol. S. J. P. ). Academic Press, San Diego. pp. 389-426. E. 2002. Cardioventilatory effects of acclimatization to aquatic hypoxia in channel catfish. Resp Physiol Neurobiol. 131:223-232. A. 2006. Isolation and characterization of putative O2 chemoreceptor cells from the gills of channel catfish (Ictalurus punctatus). Brain Res. 1092:100-107. A. 2007. Autonomic innervation of the carotid body: role of efferent inhibition.
Histochem J. 26:609-629. , and Licata, A. 1997. Paraneurons in the gills and airways of fishes. Microsc Res Tech. 37:4-12. , and Fasulo, S. 2006. Neuropeptides and nitric oxide synthase in the gill and the air-breathing organs of fishes. J Exp Zool. 305A:428-439. 2 Carotid Labyrinth and Associated Pseudobranchial Neurosecretory Cells in Indian Catfishes A. Gopesh Abstract Carotid labyrinth of land vertebrates is known for the last two centuries but that of fishes for the last few decades only. It has been found to occur in catfishes (Siluroidei) alone and there is much in common between carotid labyrinth of fish and amphibian in points of basic structure, topography and innervation.
Proc Natl Acad Sci USA. 92:295-299. , and Cutz, E. 1993. Oxygen sensing in airway chemoreceptors. Nature 365:153-155. , and Ainis, L. 1994. Distribution patterns of the paraneuronal endocrine cells in the skin, gills and the airways of fishes as determined by immunohistochemical and histological methods. Histochem J. 26:609-629. , and Licata, A. 1997. Paraneurons in the gills and airways of fishes. Microsc Res Tech. 37:4-12. , and Fasulo, S. 2006. Neuropeptides and nitric oxide synthase in the gill and the air-breathing organs of fishes.
Airway Chemoreceptors in Vertebrates by Giacomo Zaccone, Ernest Cutz, Dirk Adriaensen