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Tytuł pozycji:

Split-face histological and biochemical evaluation of tightening efficacy using temperature- and impedance-controlled continuous non-invasive radiofrequency energy.

Tytuł:
Split-face histological and biochemical evaluation of tightening efficacy using temperature- and impedance-controlled continuous non-invasive radiofrequency energy.
Autorzy:
Boisnic S; a Department of Dermatology and Anatomical Pathology , Pitie Salpetiere Hospital and Institution GREDECO , Paris , France.
Divaris M; b Department of Plastic and Maxillo-Facial Surgery , University Pitie Salpetiere , Paris , France.
Branchet MC; c Institution GREDECO , Paris , France.
Nelson AA; d Department of Dermatology , Tufts University School of Medicine, Private Practice Nelson Dermatology , St. Petersburg , FL , USA.
Źródło:
Journal of cosmetic and laser therapy : official publication of the European Society for Laser Dermatology [J Cosmet Laser Ther] 2017 Jun; Vol. 19 (3), pp. 128-132. Date of Electronic Publication: 2017 Feb 06.
Typ publikacji:
Journal Article
Język:
English
Imprint Name(s):
Publication: London : Informa Healthcare
Original Publication: London : Martin Dunitz, c2001-
MeSH Terms:
Radiofrequency Therapy*
Collagen/*metabolism
Rhytidoplasty/*methods
Collagen/ultrastructure ; Elastin/biosynthesis ; Electric Impedance ; Female ; Humans ; Middle Aged ; Photography ; Rhytidoplasty/instrumentation ; Temperature
Contributed Indexing:
Keywords: Radiofrequency; collagen remodeling; skin tightening
Substance Nomenclature:
9007-34-5 (Collagen)
9007-58-3 (Elastin)
Entry Date(s):
Date Created: 20161203 Date Completed: 20180307 Latest Revision: 20191210
Update Code:
20240105
DOI:
10.1080/14764172.2016.1262957
PMID:
27911134
Czasopismo naukowe
Background: Bipolar radiofrequency (RF) is capable of heating dermal collagen fibers and inducing skin tightening by collagen remodeling.
Objective: To substantiate safety and improvement of skin laxity following skin heating with a novel temperature- and impedance-controlled non-invasive radiofrequency (RF) device by histological and biochemical evaluations.
Methods: A split-face study was performed on 4 subjects who underwent 8 weekly RF sessions on one side of their face, leaving the other side an untreated control and then underwent facelift procedure. Clinical evaluation by photographs was done prior to the surgical procedure. Ex vivo fragments were harvested from both sides and compared. Morphometric analysis of dermal collagen fibers, collagen synthesis, and elastin synthesis evaluations were compared in triplicates.
Results: Facial skin tightening was apparent in split-face photographs. A significant increase of 7.9% in dermal collagen content, and a significant increase of 34.7% in collagen synthesis were demonstrated in the treated samples. No statistically significant effect on elastin synthesis was detected.
Conclusions: Skin tightening following treatment with non-invasive RF has proven histologically and biochemically to derive from increase in dermal collagen synthesis and content.
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