Dynamic optical coherence elastography for skin burn assessment: A preliminary study on mice model

Author:

Liu Heng1ORCID,Yang Di1,Jia Renfei1,Wang Weike1,Shang Jianwei2,Liu Quanzhong3,Liang Yanmei1ORCID

Affiliation:

1. Institute of Modern Optics, Tianjin Key Laboratory of Micro‐scale Optical Information Science and Technology Nankai University Tianjin China

2. Department of Oral Pathology, Tianjin Stomatological Hospital, Hospital of Stomatology Nankai University Tianjin China

3. Department of Dermatology Tianjin Medical University General Hospital Tianjin China

Abstract

AbstractSkin burns that include tissue coagulation necrosis imply variations in stiffness. Dynamic phase‐sensitive optical coherence elastography (OCE) is used to evaluate the stiffness of burned skin nondestructively in this paper. The homemade dynamic OCE was initially verified through tissue‐mimicking phantom experiments regarding Rayleigh wave speed. After being burned with a series of temperatures and durations, the corresponding structure and stiffness variations of mice skin were demonstrated by histological images, optical coherence tomography B‐scans, and OCE elastic wave speed maps. The results clearly displayed the variation in elastic properties and stiffness of the scab edge extending in the lateral direction. Statistical analysis revealed that murine skin burned at temperatures exceeding 100°C typically exhibited greater stiffness than skin burned at temperatures below 100°C. The dynamic OCE technique shows potential application for incorporating elasticity properties as a biomechanical extension module to diagnose skin burn injuries.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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