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PMID: 485947 Published · ppublish English Journal Article

Functions of different receptor systems in the reptilian labyrinth.

Archives of oto-rhino-laryngology ·Vol. 224 ·No. 1-2 ·1979-00-00 ·Pages 31-5

Khan NS, Müller-Arnecke H, Röskenbleck H, Trincker DE

Abstract

Different biopotentials, following a mechanical stimulus, were recorded from single hair cells of the reptilian labyrinth, with electronoptically circumscript localizations: 1. From the apical cell pole, the receptor potential, intracellular or from the ciliary surface, within the physiological range proportional to stimulus amplitude, frequency or phase, without delay, and with no real threshold of mechanosensitivity, as measured by ciliary displacement amplitude or velocity. 2. From the synaptic zone, in the basal region of the hair cell, or from contacting nerve endings, the synaptic potentials, local excitatory or inhibitory processes, respectively, with measurable latencies and with non-linear distortion. 3. From the (dendritic) endings of the first afferent neuron (or neurons), spike-shaped action potentials, synchronized by the (excitatory) synaptic potentials. Characteristic curves were plotted as a quantitative representation of the mechano-electric input-output relations of the different types of hair cells. For proceeding morphological and physiological system analysis, the comparison of the different submammalian inner-ear receptor systems gives us some new possibility of a closer correlation between ultrastructure and function.

MeSH Terms
Acoustic Stimulation Action Potentials Alligators and Crocodiles Animals Ear, Inner/physiology Electric Stimulation Hair Cells, Auditory/physiology,ultrastructure Reptiles Sensory Receptor Cells/physiology
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Khan N S
Müller-Arnecke H
Röskenbleck H
Trincker D E
References (10)
10 references, click to expand
  1. Endolymphatic and intracellular resting potential in the alligator lizard cochlea.
    Pflugers Arch. 1978 Jan 31;373(1):77-84 PMID: 565037
  2. Innervation densities of the cochlea.
    Acta Otolaryngol. 1972 Feb-Mar;73(2):235-48 PMID: 5015157
  3. Studies on the sensory hairs of receptor cells in the inner ear.
    Acta Otolaryngol. 1977 Jan-Feb;83(1-2):85-91 PMID: 842331
  4. A REVIEW OF SOME CURRENT CONCEPTS OF THE FUNCTIONAL EVOLUTION OF THE EAR IN TERRESTRIAL VERTEBRATES.
    Evolution. 1972 Dec;26(4):608-621 PMID: 28563349
  5. Efferent innervation of vestibular and auditory receptors.
    Physiol Rev. 1974 Apr;54(2):316-57 PMID: 4362161
  6. Intracellular responses to acoustic clicks in the inner ear of the alligator lizard.
    J Acoust Soc Am. 1974 Mar;55(3):606-19 PMID: 4819861
  7. Hair-cell functions and related neuronal activities in the different receptor systems of the geckonid and crocodilian labyrinth [proceedings].
    J Physiol. 1978 Nov;284:78P-79P PMID: 731585
  8. Auditory receptor organs of reptiles, birds, and mammals.
    Contrib Sens Physiol. 1971;5:129-78 PMID: 5117608
  9. Sensitivity, polarity, and conductance change in the response of vertebrate hair cells to controlled mechanical stimuli.
    Proc Natl Acad Sci U S A. 1977 Jun;74(6):2407-11 PMID: 329282
  10. Morphological basis for a mechanical linkage in otolithic receptor transduction in the frog.
    Science. 1971 Oct 22;174(4007):416-9 PMID: 5315556
Article Info
Journal
Archives of oto-rhino-laryngology
Abbr.
Arch Otorhinolaryngol
ISSN
0302-9530
Published
1979-00-00
Pages
31-5
Language
English
Region
Germany
NLM ID
0414105
Subset
IM
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