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首页> 外文期刊>Biomedical Optics Express >Experimental validation of an extended Jones matrix calculus model to study the 3D structural orientation of the collagen fibers in articular cartilage using polarization-sensitive optical coherence tomography
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Experimental validation of an extended Jones matrix calculus model to study the 3D structural orientation of the collagen fibers in articular cartilage using polarization-sensitive optical coherence tomography

机译:扩展琼斯矩阵演算模型的实验验证,以使用偏振敏感光学相干断层扫描技术研究关节软骨中胶原纤维的3D结构取向

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摘要

We report results to verify a theoretical framework to analyze the 3D depth-wise structural organization of collagen fibers in articular cartilage using polarization-sensitive optical coherence tomography. Apparent birefringence data obtained from multi-angle measurements using a time domain polarization-sensitive optical coherence tomography system has been compared with simulated data based on the extended Jones matrix calculus. Experimental data has been shown to agree with the lamellar model previously proposed for the cartilage microstructure based on scanning electron microscopy data. This tool could have potential application in mapping the collagen structural orientation information of cartilage non-invasively during arthroscopy.
机译:我们报告结果,以验证使用偏振敏感光学相干断层扫描术分析关节软骨中胶原纤维的3D深度结构组织的理论框架。使用时域偏振敏感光学相干层析成像系统从多角度测量获得的表观双折射数据已与基于扩展琼斯矩阵演算的模拟数据进行了比较。实验数据已经显示出与先前基于扫描电子显微镜数据提出的用于软骨微结构的层状模型一致。该工具在关节镜检查中无创地绘制软骨的胶原蛋白结构定向信息方面可能具有潜在的应用。

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