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Suction-Based Optical Coherence Elastography for the Biomechanical Characterization of Pathological Skin Conditions: A Pilot Study

  • L. van Haasterecht*
  • , L. Bartolini
  • , J. M. I. Louter
  • , P. J. González
  • , F. B. Niessen
  • , D. Iannuzzi
  • , M. L. Groot
  • , P. P. M. van Zuijlen
  • *Corresponding author for this work
  • Vrije Universiteit Amsterdam
  • Amsterdam UMC
  • Red Cross Hospital, Beverwijk
  • Amsterdam UMC - Vrije Universiteit Amsterdam
  • MITTSU Institute
  • University of Amsterdam

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

Accurate characterization of mechanical properties is crucial in the evaluation of therapeutic effects for problematic skin conditions. A pilot study was carried out using a novel optical coherence elastography (OCE) device, combining mechanical characterization through suction-based deformation and imaging through optical coherence tomography. Using AI-assisted image segmentation and a power-law model, we were able to describe the mechanical behavior, comparing with measurements from the most commonly used commercial instrument (Cutometer) and subjective analyses of stiffness using the Patient and Observer Scar Assessment Scale. Twenty subjects were included with either keloids or hypertrophic scars. Measurements were fast and produced no discomfort. Mechanical and structural (epidermal thickness and rugosity) descriptors in pathologic skin conditions differed significantly from those in control tissue. We showed for the first time, the clinical feasibility of this novel suction-based OCE device in evaluating mechanical and structural properties in pathological skin conditions such as scars.
Original languageEnglish
Article numbere202300314
JournalJournal of biophotonics
Volume17
Issue number11
Early online date2024
DOIs
Publication statusPublished - Nov 2024

Keywords

  • hypertrophic scar
  • keloid
  • pliability
  • stiffness

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