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LIGHT AND ELECTRON MICROSCOPIC ANALYSIS OF THE SOMATA AND PARENT AXONS INNERVATING THE RAT UPPER MOLAR AND LOWER INCISOR PULP

Authors
Paik, S. K.Park, K. P.Lee, S. K.Ma, S. K.Cho, Y. S.Kim, Y. K.Rhyu, I. J.Ahn, D. K.Yoshida, A.Bae, Y. C.
Issue Date
15-Sep-2009
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Keywords
dental pulp; dental primary sensory neuron; parent axon; ultrastructure
Citation
NEUROSCIENCE, v.162, no.4, pp.1279 - 1286
Indexed
SCIE
SCOPUS
Journal Title
NEUROSCIENCE
Volume
162
Number
4
Start Page
1279
End Page
1286
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/119316
DOI
10.1016/j.neuroscience.2009.05.046
ISSN
0306-4522
Abstract
The morphology of intradental nerve fibers of permanent teeth and of continuously growing rodent incisors has been studied in detail but little information is available on the parent axons that give rise to these fibers. Here we examined the axons and somata of trigeminal neurons that innervate the rat upper molar and lower incisor pulp using tracing with horseradish peroxidase and light and electron microscopic analysis. The majority (similar to 80%) of the parent axons in the proximal root of the trigeminal ganglion that innervated either molar or incisor pulp were small myelinated fibers (<20 mu m(2) cross-sectional area). The remaining similar to 20% of the fibers were almost exclusively large myelinated for the molar pulp and unmyelinated for the incisor pulp. The majority of neuronal somata in the trigeminal ganglion that innervated either molar (48%) or incisor pulp (62%) were medium in size (300-600 mu m(2) cross-sectional area). Large somata (>600 mu m(2)) constituted 34% and 20% of the trigeminal neurons innervating molar and incisor pulp, respectively, while small somata (<300 mu m(2)) constituted 17% of the molar and 18% of the incisor neurons. The present study revealed that the morphology of parent axons of dental primary sensory neurons may differ from that of their intradental branches, and also suggests that the nerve fiber function may be carried out differently in the molar and incisor pulp in the rat. (C) 2009 IBRO. Published by Elsevier Ltd. All rights reserved.
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