Literature DB >> 2738197

Morphology and physiology of cells in slice preparations of the dorsal cochlear nucleus of mice.

D Oertel1, S H Wu.   

Abstract

Horseradish peroxidase (HRP) was injected into cells from which intracellular recordings were made in slices of the dorsal cochlear nucleus (DCN) in order to correlate physiology with morphology. In general, the morphology of cells labeled intracellularly with HRP corresponded to those made with Golgi impregnations in mice and other mammals. The following cells were labeled: one granule cell, four cartwheel cells, eight fusiform cells, two other cells in the fusiform cell layer, and two tuberculoventral association cells in the deep layers of the DCN. The axon of the granule cell runs parallel to isofrequency laminae with collaterals branching perpendicularly and running along the tonotopic axis. The cartwheel cells have dendrites in the molecular layer that are densely covered with spines. The axon of one cell terminates just dorsally to the cell body. Fusiform cells have the characteristic spiny, apical and smooth, basal dendrites. The basal dendrites are conspicuously oriented parallel to isofrequency laminae. Axons of the fusiform cells exit through the dorsal acoustic stria without branching. The two tuberculoventral association cells in the deep DCN have axons that terminate both in the deep DCN, within the same isofrequency lamina that contains the cell body, and in the ventral cochlear nucleus (VCN). Intracellular recordings from 11 of these cells show that they cannot be distinguished on the basis of their responses to intracellularly injected current. All cell types fired large action potentials that were followed by a fast and a slower undershoot, distinguishing them from cells of the VCN but not from one another. Most cells responded to shocks of the auditory nerve root with early EPSPs and later IPSPs. The latencies of EPSPs show that some were monosynaptic and others polysynaptic. That there was no systematic relationship between the latencies of EPSPs and the cell types from which they were recorded shows that shocks to the nerve root may have activated more than just the large, myelinated, auditory nerve fibers.

Entities:  

Mesh:

Year:  1989        PMID: 2738197     DOI: 10.1002/cne.902830206

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  20 in total

1.  Time course and permeation of synaptic AMPA receptors in cochlear nuclear neurons correlate with input.

Authors:  S M Gardner; L O Trussell; D Oertel
Journal:  J Neurosci       Date:  1999-10-15       Impact factor: 6.167

2.  Molecular layer inhibitory interneurons provide feedforward and lateral inhibition in the dorsal cochlear nucleus.

Authors:  Michael T Roberts; Laurence O Trussell
Journal:  J Neurophysiol       Date:  2010-08-18       Impact factor: 2.714

3.  A rapid method combining Golgi and Nissl staining to study neuronal morphology and cytoarchitecture.

Authors:  Nadia Pilati; Matthew Barker; Sofoklis Panteleimonitis; Revers Donga; Martine Hamann
Journal:  J Histochem Cytochem       Date:  2008-02-18       Impact factor: 2.479

4.  Voltage-gated potassium channel (Kv) subunits expressed in the rat cochlear nucleus.

Authors:  Zoltán Rusznák; Gábor Bakondi; Krisztina Pocsai; Agnes Pór; Lívia Kosztka; Balázs Pál; Dénes Nagy; Géza Szucs
Journal:  J Histochem Cytochem       Date:  2008-02-05       Impact factor: 2.479

5.  Two distinct types of inhibition mediated by cartwheel cells in the dorsal cochlear nucleus.

Authors:  Jaime G Mancilla; Paul B Manis
Journal:  J Neurophysiol       Date:  2009-05-27       Impact factor: 2.714

6.  Computer simulation of shared input among projection neurons in the dorsal cochlear nucleus.

Authors:  K A Davis; H F Voigt
Journal:  Biol Cybern       Date:  1996-05       Impact factor: 2.086

7.  Multisensory activation of ventral cochlear nucleus D-stellate cells modulates dorsal cochlear nucleus principal cell spatial coding.

Authors:  Calvin Wu; Susan E Shore
Journal:  J Physiol       Date:  2018-08-18       Impact factor: 5.182

8.  Early multisensory integration of self and source motion in the auditory system.

Authors:  Eyal Wigderson; Israel Nelken; Yosef Yarom
Journal:  Proc Natl Acad Sci U S A       Date:  2016-06-29       Impact factor: 11.205

9.  Target- and input-dependent organization of AMPA and NMDA receptors in synaptic connections of the cochlear nucleus.

Authors:  María E Rubio; Yugo Fukazawa; Naomi Kamasawa; Cheryl Clarkson; Elek Molnár; Ryuichi Shigemoto
Journal:  J Comp Neurol       Date:  2014-07-29       Impact factor: 3.215

10.  Alterations in the spontaneous discharge patterns of single units in the dorsal cochlear nucleus following intense sound exposure.

Authors:  Paul G Finlayson; James A Kaltenbach
Journal:  Hear Res       Date:  2009-07-19       Impact factor: 3.208

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