Literature DB >> 9310445

Properties of individual embryonic primary afferents and their spinal projections in the rat.

K Mirnics1, H R Koerber.   

Abstract

Embryonic (E19-E20) and early postnatal (P2) spinal cords with intact saphenous and sciatic nerves were isolated and placed in aerated artificial cerebral spinal fluid (CSF). Intracellular recordings were made from cells in the L2-L6 dorsal root ganglia using microelectrodes filled with 3 M potassium acetate or 5% neurobiotin (NB) in 1 M potassium acetate. Several physiological properties of adequately impaled cells were measured, including peripheral conduction velocity, action potential (AP) amplitude and duration, duration of afterhyperpolarization (AHP), input impedance, rheobase, presence of inward rectifying current, and maximum somal firing frequency. The extent to which these properties are correlated also was determined. One cell per ganglion was injected with NB. Stained somata and their central projections in the spinal cord were visualized in serial 50 microm sections. Cell size was determined and the central morphology of the central projections examined. Although some fibers were in the process of growing into the spinal cord, others had established projections over several millimeters in the dorsal columns. Although most of these fibers supported projections in the gray matter, 22% only maintained fibers in the dorsal columns. Fibers with projections in the dorsal horn exhibited three types of morphology: projections confined to the superficial dorsal horn (laminae I, II); terminals confined to laminae III-V; and projections spanning laminae II-V. In addition, some embryonic fibers maintained projections to the dorsal horn that extended over five lumbar segments. Somal APs could be divided into two groups: broad spikes with inflections on their falling phase and narrow spikes without inflections. On average, cells with broad spikes (BS) had the following characteristics: slower peripheral conduction velocity, larger amplitude, higher rheobase and input impedance, longer AHP duration, and lower maximum firing frequency. There were significant correlations between conduction velocity and several of the physiological properties. Conduction velocity was negatively correlated with AP duration, rheobase, and input impedance and positively correlated with maximum firing frequency. Comparisons between spike shape and central morphology revealed that cells lacking collaterals in the gray matter and those with projections in the superficial dorsal horn always had broad somal spikes with inflections. Those with projections confined to laminae III-V always had narrow somal spikes (NS).

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Year:  1997        PMID: 9310445     DOI: 10.1152/jn.1997.78.3.1590

Source DB:  PubMed          Journal:  J Neurophysiol        ISSN: 0022-3077            Impact factor:   2.714


  6 in total

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Authors:  C Jeffery Woodbury; H Richard Koerber
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Journal:  J Comp Neurol       Date:  2010-08-15       Impact factor: 3.215

Review 3.  The cellular and molecular basis of somatosensory neuron development.

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4.  Identity of myelinated cutaneous sensory neurons projecting to nocireceptive laminae following nerve injury in adult mice.

Authors:  C Jeffery Woodbury; Florenta A Kullmann; Sabrina L McIlwrath; H Richard Koerber
Journal:  J Comp Neurol       Date:  2008-05-20       Impact factor: 3.215

5.  cGMP-mediated signaling via cGKIalpha is required for the guidance and connectivity of sensory axons.

Authors:  Hannes Schmidt; Matthias Werner; Paul A Heppenstall; Mechthild Henning; Margret I Moré; Susanne Kühbandner; Gary R Lewin; Franz Hofmann; Robert Feil; Fritz G Rathjen
Journal:  J Cell Biol       Date:  2002-11-04       Impact factor: 10.539

6.  Developmental waves of mechanosensitivity acquisition in sensory neuron subtypes during embryonic development.

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  6 in total

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