Literature DB >> 11588185

Primordial rhythmic bursting in embryonic cochlear ganglion cells.

T A Jones1, S M Jones, K C Paggett.   

Abstract

This study examined the nature of spontaneous discharge patterns in cochlear ganglion cells in embryonic day 13 (E13) to early E17 chicken embryos (stages 39-43). Neural recordings were made with glass micropipettes. No sound-driven activity was seen for the youngest embryos (maximum intensity 107 dB sound pressure level). Ganglion cells were labeled with biotinylated dextran amine in four embryos. In two animals, primary afferents projected to hair cells in the middle region along the length of the basilar papilla in which, in one cell, the terminals occupied a neural transverse position and, in the other, a more abneural location. Statoacoustic ganglion cells showing no spontaneous activity were seen for the first time in the chicken. The proportion of "silent" cells was largest at the youngest stages (stage 39, 67%). In active cells, mean spontaneous discharge rates [9.4 +/- 10.4 spikes (Sp)/sec; n = 44] were lower than rates for older embryos (19 +/- 17 Sp/sec) (Jones and Jones, 2000). Embryos at stages 39-41 evidenced even lower rates (4.2 +/- 5.0 Sp/sec). The most salient feature of spontaneous activity for stages 39-43 was a bursting discharge pattern in >75% of active neurons (33 of 44). Moreover, in 55% of these cells, there was a clear, slow, rhythmic bursting pattern. The proportion of cells showing rhythmic bursting was greatest at the youngest stages (39-42) and decreased to <30% at stage 43. Rate of bursting ranged from 1 to 54 bursts per minute. The presence of rhythmic bursting in cochlear ganglion cells at E13-E17 provides an explanation for the existence of such patterns in central auditory relays. The bursting patterns may serve as a patterning signal for central synaptic refinements in the auditory system during development.

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Keywords:  Non-programmatic

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Year:  2001        PMID: 11588185      PMCID: PMC6763868     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  34 in total

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Authors:  P A Fuchs; B H Sokolowski
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4.  A series of normal stages in the development of the chick embryo.

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5.  Cell death during development of the cochlear and vestibular ganglia of the chick.

Authors:  M D Ard; D K Morest
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6.  The development of auditory evoked responses in the cochlea and cochlear nuclei of the chick.

Authors:  J C Saunders; R B Coles; G R Gates
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7.  The growth of cochlear fibers and the formation of their synaptic endings in the avian inner ear: a study with the electron microscope.

Authors:  M C Whitehead; D K Morest
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Authors:  M C Whitehead; D K Morest
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9.  Transient period of correlated bursting activity during development of the mammalian retina.

Authors:  R O Wong; M Meister; C J Shatz
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10.  Neural tuning characteristics of auditory primary afferents in the chicken embryo.

Authors:  S M Jones; T A Jones
Journal:  Hear Res       Date:  1995-02       Impact factor: 3.208

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  26 in total

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10.  Suppression of spontaneous firing in inferior colliculus neurons during sound processing.

Authors:  S V Voytenko; A V Galazyuk
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