A quantitative technique to analyze and evaluate microstructures of skin hair follicles based on mueller matrix polarimetry

Author:

Shi Yixuan,Sun Yanan,Huang Rongrong,Zhou Yong,Zhai Haoyu,Fan Zhipeng,Ou Zechao,Huang Pengsheng,He Honghui,He Chao,Wang Yi,Ma Hui

Abstract

In this study, we propose a quantitative technique to analyze and evaluate microstructures of skin hair follicles based on Mueller Matrix transmission microscopy. We measure the Mueller matrix polar decomposition (MMPD) parameter images to reveal the characteristic linear birefringence distribution induced by hair follicles in mouse skin tissue samples. The results indicate that the Mueller matrix-derived parameters can be used to reveal the location and structural integrity of hair follicles. For accurate hair follicle location identification and quantitative structural evaluations, we use the image segmentation method, sliding window algorithm, and image texture analysis methods together to process the Mueller matrix-derived images. It is demonstrated that the hair follicle regions can be more accurately recognized, and their locations can be precisely identified based on the Mueller matrix-derived texture parameters. Moreover, comparisons between manual size measurement and polarimetric calculation results confirm that the Mueller matrix parameters have good performance for follicle size estimation. The results shown in this study suggest that the technique based on Mueller matrix microscopy can realize automatically hair follicle identification, detection, and quantitative evaluation. It has great potential in skin structure-related studies and clinical dermatological applications.

Publisher

Frontiers Media SA

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics,Materials Science (miscellaneous),Biophysics

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A dual-modality imaging method based on polarimetry and second harmonic generation;Second Conference on Biomedical Photonics and Cross-Fusion (BPC 2023);2023-07-28

2. Automated texture-based segmentation of hair follicles in volumetric optical coherence tomography images of dermatologic burn wounds;2023 Photonics North (PN);2023-06-12

3. Automatic detection and quantitative evaluation of skin hair follicles based on Mueller matrix polarimetry;Polarized Light and Optical Angular Momentum for Biomedical Diagnostics 2023;2023-03-15

4. Comparative study of the influence of imaging resolution on polarization properties derived from Mueller matrix;Polarized Light and Optical Angular Momentum for Biomedical Diagnostics 2023;2023-03-15

5. Mueller matrix polarimetry for in vivo scar tissue diagnostics;Polarized Light and Optical Angular Momentum for Biomedical Diagnostics 2023;2023-03-15

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