Effect of the Samples’ Surface With Complex Microscopic Geometry on 3 × 3 Mueller Matrix Measurement of Tissue Bulks

The clinical in vivo tissue bulks’ surface is always coarse and shows a complex microscopic geometry which may affect the visual effect of polarization images and calculation of polarization parameters of the sample. To confirm whether this effect would cause identification difficulties and misjudgm...

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Main Authors: Yi-Rong Liu, Wei-Zheng Sun, Jian Wu
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-03-01
Series:Frontiers in Bioengineering and Biotechnology
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fbioe.2022.841298/full
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author Yi-Rong Liu
Yi-Rong Liu
Wei-Zheng Sun
Jian Wu
author_facet Yi-Rong Liu
Yi-Rong Liu
Wei-Zheng Sun
Jian Wu
author_sort Yi-Rong Liu
collection DOAJ
description The clinical in vivo tissue bulks’ surface is always coarse and shows a complex microscopic geometry which may affect the visual effect of polarization images and calculation of polarization parameters of the sample. To confirm whether this effect would cause identification difficulties and misjudgments on the target recognition when performed the polarization imaging based on 3 × 3 Mueller matrix measurement, cylindrical type and slope type physical models were used to study and analyze the effect of the surface with complex microscopic geometry on the polarization images. Then, clinical tumor bulk samples were used to interact with different sizes of patterns to simulate the different complex microscopic geometry and test the coarse surface effect on polarization images. Meanwhile, assessment parameters were defined to evaluate and confirm the variation between two polarization images quantitatively. The results showed that the polarization imaging of the sample surface with the complex microscopic geometry led to acceptable visual effect and limited quantitative variation on the value of polarization parameters and assessment parameters, and it caused no identification difficulties on target recognition, indicating that it is feasible to apply the polarization imaging based on 3 × 3 Mueller matrix measurement on clinical in vivo tissues with the complex microscopic geometry sample surface.
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spelling doaj.art-1ccd9418d9984f88b293c854c0207b012022-12-21T17:15:28ZengFrontiers Media S.A.Frontiers in Bioengineering and Biotechnology2296-41852022-03-011010.3389/fbioe.2022.841298841298Effect of the Samples’ Surface With Complex Microscopic Geometry on 3 × 3 Mueller Matrix Measurement of Tissue BulksYi-Rong Liu0Yi-Rong Liu1Wei-Zheng Sun2Jian Wu3School of Medicine, Tsinghua University, Beijing, ChinaTsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, ChinaTsinghua-Berkeley Shenzhen Institute, Tsinghua University, Shenzhen, ChinaTsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, ChinaThe clinical in vivo tissue bulks’ surface is always coarse and shows a complex microscopic geometry which may affect the visual effect of polarization images and calculation of polarization parameters of the sample. To confirm whether this effect would cause identification difficulties and misjudgments on the target recognition when performed the polarization imaging based on 3 × 3 Mueller matrix measurement, cylindrical type and slope type physical models were used to study and analyze the effect of the surface with complex microscopic geometry on the polarization images. Then, clinical tumor bulk samples were used to interact with different sizes of patterns to simulate the different complex microscopic geometry and test the coarse surface effect on polarization images. Meanwhile, assessment parameters were defined to evaluate and confirm the variation between two polarization images quantitatively. The results showed that the polarization imaging of the sample surface with the complex microscopic geometry led to acceptable visual effect and limited quantitative variation on the value of polarization parameters and assessment parameters, and it caused no identification difficulties on target recognition, indicating that it is feasible to apply the polarization imaging based on 3 × 3 Mueller matrix measurement on clinical in vivo tissues with the complex microscopic geometry sample surface.https://www.frontiersin.org/articles/10.3389/fbioe.2022.841298/fullpolarization imagingsurface with microscopic geometry3 × 3 Mueller matrixphysical modelsclinical tissue bulks
spellingShingle Yi-Rong Liu
Yi-Rong Liu
Wei-Zheng Sun
Jian Wu
Effect of the Samples’ Surface With Complex Microscopic Geometry on 3 × 3 Mueller Matrix Measurement of Tissue Bulks
Frontiers in Bioengineering and Biotechnology
polarization imaging
surface with microscopic geometry
3 × 3 Mueller matrix
physical models
clinical tissue bulks
title Effect of the Samples’ Surface With Complex Microscopic Geometry on 3 × 3 Mueller Matrix Measurement of Tissue Bulks
title_full Effect of the Samples’ Surface With Complex Microscopic Geometry on 3 × 3 Mueller Matrix Measurement of Tissue Bulks
title_fullStr Effect of the Samples’ Surface With Complex Microscopic Geometry on 3 × 3 Mueller Matrix Measurement of Tissue Bulks
title_full_unstemmed Effect of the Samples’ Surface With Complex Microscopic Geometry on 3 × 3 Mueller Matrix Measurement of Tissue Bulks
title_short Effect of the Samples’ Surface With Complex Microscopic Geometry on 3 × 3 Mueller Matrix Measurement of Tissue Bulks
title_sort effect of the samples surface with complex microscopic geometry on 3 3 mueller matrix measurement of tissue bulks
topic polarization imaging
surface with microscopic geometry
3 × 3 Mueller matrix
physical models
clinical tissue bulks
url https://www.frontiersin.org/articles/10.3389/fbioe.2022.841298/full
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AT weizhengsun effectofthesamplessurfacewithcomplexmicroscopicgeometryon33muellermatrixmeasurementoftissuebulks
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