Literature DB >> 23574500

Positional differences and aging changes in Japanese woman epidermal thickness and corneous thickness determined by OCT (optical coherence tomography).

Tetsuya Tsugita1, Takafumi Nishijima, Takashi Kitahara, Yoshinori Takema.   

Abstract

BACKGROUND/
PURPOSE: A number of studies of the internal structure of Japanese woman's skin are now performed by means of optical coherence tomography (OCT) as a technique capable of visualizing the internal structure in a non-invasive manner.
METHODS: We measured the epidermal and corneous thicknesses at 11 sites in 116 healthy female volunteers aged from teens to sixties to examine possible positional differences and aging changes.
RESULTS: The epidermal thickness determined at the 11 sites averaged 68.6 ± 23.0 μm (mean ± SD) and the corneous thickness averaged 14.1 ± 1.80 μm, the values of which were thinner than those presented in conventional textbooks on the subject. It was also revealed that, with advancing age, the epidermal thickness becomes less at some sites but showed no change at other sites, and the comparison between age groups suggested that a thinning trend is generally observed up to the thirties with no continuous changes thereafter.
CONCLUSION: Aging changes in the epidermis appeared to occur in the granular to basal layers, and the results obtained by OCT, which can viably determine the skin thickness, seemed to be very important for understanding the skin more accurately.
© 2013 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  OCT; aging; corneous thickness; epidermal thickness

Mesh:

Year:  2013        PMID: 23574500     DOI: 10.1111/srt.12021

Source DB:  PubMed          Journal:  Skin Res Technol        ISSN: 0909-752X            Impact factor:   2.365


  9 in total

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7.  Universal in vivo Textural Model for Human Skin based on Optical Coherence Tomograms.

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8.  Dielectrical Properties of Living Epidermis and Dermis in the Frequency Range from 1 kHz to 1 MHz.

Authors:  B Tsai; H Xue; E Birgersson; S Ollmar; U Birgersson
Journal:  J Electr Bioimpedance       Date:  2019-07-02

9.  Development and Evaluation of an In Silico Dermal Absorption Model Relevant for Children.

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  9 in total

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