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Histological and Ultrastructural Evaluation of the Effects of a Radiofrequency-Based Nonablative Dermal Remodeling Device

Archives of Dermatology · 2004 · Vol. 140(2) · pp. 204–9
Brian D. ZelicksonDavid A. KistEric F. BernsteinDouglas B. BrownSergey M. KsenzenkoJay A. BurnsSuzanne L. KilmerDavid A. MehreganKarl Pope

Abstract

Our findings suggest that collagen fibril contraction occurs immediately after treatment and gives rise to tissue contraction and thermally mediated wounding, which induces new collagen production.

Dermatologic Treatments and ResearchLaser Applications in Dentistry and MedicineSkin Protection and AgingMedicineUltrastructureContraction (grammar)FibrilGround substancePathologyCollagen fibrilDermisWestern blotTendon

MeSH terms

AnimalsCattleCollagenDose-Response Relationship, RadiationFemaleHumansPilot ProjectsRadio WavesRadiographySkinTendonsAbdominal WallIn Vitro Techniques
Citations
373
FWCI
26.83
field-weighted impact
References
27
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Cited by
Photoaging: Mechanisms and repair
Journal of the American Academy of Dermatology · 2006 · 594 citations
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Histological and Ultrastructural Evaluation of the Effects of a Radiofrequency-Based Nonablative Dermal Remodeling Device · Scinovex