Visualization enhancement by PCA-based image fusion for skin burns assessment in polarization-sensitive OCT

Author:

Xu Jingjiang1ORCID,Zhu Mingtao2,Tang Peijun3,Li Junyun4,Gao Kai5,Qiu Haixia6,Zhao Shiyong7,Lan Gongpu1ORCID,Jia Haibo8,Yu Bo8

Affiliation:

1. Guangdong Weiren Meditech Co., Ltd.

2. Foshan University

3. South China Normal University

4. Sun Yat-sen University Cancer Center

5. Sun Yat-sen University

6. Chinese PLA General Hospital

7. Tianjin Hengyu Medical Technology Co., Ltd.

8. The Second Affiliated Hospital of Harbin Medical University

Abstract

Polarization-sensitive optical coherence tomography (PS-OCT) is a functional imaging tool for measuring tissue birefringence characteristics. It has been proposed as a potentially non-invasive technique for evaluating skin burns. However, the PS-OCT modality usually suffers from high system complexity and relatively low tissue-specific contrast, which makes assessing the extent of burns in skin tissue difficult. In this study, we employ an all-fiber-based PS-OCT system with single-state input, which is simple and efficient for skin burn assessment. Multiple parameters, such as phase retardation (PR), degree of polarization uniformity (DOPU), and optical axis orientation, are obtained to extract birefringent features, which are sensitive to subtle changes in structural arrangement and tissue composition. Experiments on ex vivo porcine skins burned at different temperatures were conducted for skin burn investigation. The burned depths estimated by PR and DOPU increase linearly with the burn temperature to a certain extent, which is helpful in classifying skin burn degrees. We also propose an algorithm of image fusion based on principal component analysis (PCA) to enhance tissue contrast for the multi-parameter data of PS-OCT imaging. The results show that the enhanced images generated by the PCA-based image fusion method have higher tissue contrast, compared to the en-face polarization images by traditional mean value projection. The proposed approaches in this study make it possible to assess skin burn severity and distinguish between burned and normal tissues.

Funder

National Natural Science Foundation of China

Research Project of Department of Education of Guangdong Province

Guangdong Basic and Applied Basic Research Foundation

Innovation and Entrepreneurship Teams Project of Guangdong Pearl River Talents Program

Research Fund of Guangdong-Hong Kong-Macao Joint Laboratory for Intelligent Micro-Nano Optoelectronic Technology

Publisher

Optica Publishing Group

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