Electron Microscopic Reconstruction of Neural Circuitry in the Cochlea

2021 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​Electron Microscopic Reconstruction of Neural Circuitry in the Cochlea​
Hua, Y.; Ding, X.; Wang, H.; Wang, F.; Lu, Y.; Neef, J.   & Gao, Y. et al.​ (2021) 
Cell Reports34(1) pp. 108551​.​ DOI: https://doi.org/10.1016/j.celrep.2020.108551 

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Authors
Hua, Yunfeng; Ding, Xu; Wang, Haoyu; Wang, Fangfang; Lu, Yan; Neef, Jakob ; Gao, Yunge; Moser, Tobias ; Wu, Hao
Abstract
Recent studies reveal great diversity in the structure, function, and efferent innervation of afferent synaptic connections between the cochlear inner hair cells (IHCs) and spiral ganglion neurons (SGNs), which likely enables audition to process a wide range of sound pressures. By performing an extensive electron microscopic (EM) reconstruction of the neural circuitry in the mature mouse organ of Corti, we demonstrate that afferent SGN dendrites differ in abundance and composition of efferent innervation in a manner dependent on their afferent synaptic connectivity with IHCs. SGNs that sample glutamate release from several presynaptic ribbons receive more efferent innervation from lateral olivocochlear projections than those driven by a single ribbon. Next to the prevailing unbranched SGN dendrites, we found branched SGN dendrites that can contact several ribbons of 1–2 IHCs. Unexpectedly, medial olivocochlear neurons provide efferent innervation of SGN dendrites, preferring those forming single-ribbon, pillar-side synapses. We propose a fine-tuning of afferent and efferent SGN innervation.
Issue Date
2021
Journal
Cell Reports 
Project
EXC 2067: Multiscale Bioimaging 
Working Group
RG Moser (Molecular Anatomy, Physiology and Pathology of Sound Encoding) 
External URL
https://mbexc.uni-goettingen.de/literature/publications/124
ISSN
2211-1247
Language
English

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