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Functional Development of Hair Cells in the Mammalian Inner Ear

Chapter
Publication Date:
2014
abstract:
Sensory organs and the neural networks responsible for processing sensory information are supremely well adapted for detecting input from the external environment. Their challenge is to maximize sensitivity and fidelity over a wide dynamic range. Mammalian sensory hair cells process mechanical stimuli from sound, movement, and gravitational forces with unparalleled temporal precision from the very low frequency displacements in the vestibular system to as much as 180 kHz in the auditory system. Here we review the current understanding of how mammalian cochlear and vestibular systems orchestrate the functional development of hair cells from mechanoelectrical transduction in their apical hair bundles to synaptic transmission through their specialized ribbon synapses.
Iris type:
2.1 Contributo in volume (Capitolo o Saggio)
Keywords:
inner ear; development; hair cells; ion channels; vestibular; cochlea
List of contributors:
Corns, L. F.; Bardhan, T.; Houston, O.; Olt, J.; Holley, M. C.; Masetto, Sergio; Johnson, S. L.; Marcotti, W.
Authors of the University:
MASETTO SERGIO
Handle:
https://iris.unipv.it/handle/11571/980072
Book title:
Development of Auditory and Vestibular Systems
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URL

http://store.elsevier.com/Development-of-Auditory-and-Vestibular-Systems/isbn-9780124080881/
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