Literature DB >> 9703029

Merkel complexes of human digital skin: three-dimensional imaging with confocal laser microscopy and double immunofluorescence.

D Guinard1, Y Usson, C Guillermet, R Saxod.   

Abstract

Three-dimensional (3-D) reconstruction of images provided by confocal scanning laser microscopy (CSLM) is a powerful tool in a morpho-functional approach to cutaneous innervation studies. To investigate mechanoreceptors in the hand, a study of Merkel complexes was performed in human finger. A double fluorescent-conjugated immunolabeling with antibodies against neurofilament (NF 200) and cytokeratin (CK 20) on floating, thick cutaneous samples (80 to 100 microm), was used. After acquisition of serial optical planes by CSLM, reconstruction was performed with 3-D reconstruction software tools. Merkel cells were clearly labeled with CK 20, whereas nerve components were only NF 200 reactive. The cells, localized on the basal lamina of the epidermis, were usually arranged in clusters of five to eight cells. Each cell was connected to a nerve process ramification originating from a unique fiber. Quantitative data, compiled from a sample of 25 Merkel complexes, gave a mean cell diameter of 13 +/- 1 microm and a mean nerve fiber size of 3 +/- 1 microm. Surface measurements were done on a single reconstructed cluster with a mean and standard error which only refers to the optical 3-D resolution. It gives a surface of 12 +/- 1 microm2 for the contact zone between cell and nerve fiber and a cluster area of about 500 microm2. The great precision of reconstructed images provides a detailed analysis of spatial relationships between abutting nerve fibers and Merkel cells. Data interpretation is improved with complementary ultrastructural and physiological studies results, and this allows an accurate investigation of cutaneous sensory endings.

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Year:  1998        PMID: 9703029

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


  6 in total

1.  Skin relaxation predicts neural firing rate adaptation in SAI touch receptors.

Authors:  Aaron L Williams; Gregory J Gerling; Scott A Wellnitz; Sarah M Bourdon; Ellen A Lumpkin
Journal:  Annu Int Conf IEEE Eng Med Biol Soc       Date:  2010

2.  Evaluating Populations of Tactile Sensors for Curvature Discrimination.

Authors:  Isabelle I Rivest; Gregory J Gerling
Journal:  Proc Symp Haptic Interface Virtual Env Teleoperator Syst       Date:  2010-03-25

Review 3.  Touch sense: functional organization and molecular determinants of mechanosensitive receptors.

Authors:  Yann Roudaut; Aurélie Lonigro; Bertrand Coste; Jizhe Hao; Patrick Delmas; Marcel Crest
Journal:  Channels (Austin)       Date:  2012 Jul-Aug       Impact factor: 2.581

4.  Statistical analysis and modeling of variance in the SA-I mechanoreceptor response to sustained indentation.

Authors:  Daine R Lesniak; Scott A Wellnitz; Gregory J Gerling; Ellen A Lumpkin
Journal:  Conf Proc IEEE Eng Med Biol Soc       Date:  2009

5.  Validating a population model of tactile mechanotransduction of slowly adapting type I afferents at levels of skin mechanics, single-unit response and psychophysics.

Authors:  Gregory J Gerling; Isabelle I Rivest; Daine R Lesniak; Jacob R Scanlon; Lingtian Wan
Journal:  IEEE Trans Haptics       Date:  2014 Apr-Jun       Impact factor: 2.487

6.  Tactile sensitivity in the rat: a correlation between receptor structure and function.

Authors:  Lucia Guzun; Pascal Fortier-Poisson; Jean-Sébastien Langlais; Allan M Smith
Journal:  Exp Brain Res       Date:  2021-09-14       Impact factor: 1.972

  6 in total

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