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Monitoring temporal microstructural variations of skeletal muscle tissues by multispectral Mueller matrix polarimetry

机译:MultiSpectral Mueller矩阵偏振物监测骨骼肌组织的时间微观结构变化

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Mueller matrix polarimetry is a powerful tool for detecting microscopic structures, therefore can be used to monitor physiological changes of tissue samples. Meanwhile, spectral features of scattered light can also provide abundant microstructural information of tissues. In this paper, we take the 2D multispectral backscattering Mueller matrix images of bovine skeletal muscle tissues, and analyze their temporal variation behavior using multispectral Mueller matrix parameters. The 2D images of the Mueller matrix elements are reduced to the multispectral frequency distribution histograms (mFDHs) to reveal the dominant structural features of the muscle samples more clearly. For quantitative analysis, the multispectral Mueller matrix transformation (MMT) parameters are calculated to characterize the microstructural variations during the rigor mortis and proteolysis processes of the skeletal muscle tissue samples. The experimental results indicate that the multispectral MMT parameters can be used to judge different physiological stages for bovine skeletal muscle tissues in 24 hours, and combining with the multispectral technique, the Mueller matrix polarimetry and FDH analysis can monitor the microstructural variation features of skeletal muscle samples. The techniques may be used for quick assessment and quantitative monitoring of meat qualities in food industry.
机译:Mueller矩阵偏振物是用于检测微观结构的强大工具,因此可用于监测组织样本的生理变化。同时,散射光的光谱特征还可以提供浓度的组织微观结构信息。在本文中,我们采用了牛骨骼肌组织的2D多光谱反向散射穆勒·矩阵图像,并使用多光谱ueller矩阵参数分析它们的时间变化行为。穆勒矩阵元件的2D图像减少到多光谱频率分布直方图(MFDH)以更清楚地揭示肌样品的显性结构特征。为了定量分析,计算多光谱ubeller矩阵变换(MMT)参数,以表征骨骼肌组织样品的严格菌兵和蛋白水解过程中的微观结构变化。实验结果表明,多光谱MMT参数可用于在24小时内判断牛骨骼肌组织的不同生理阶段,并与多光谱技术相结合,穆勒矩阵偏振仪和FDH分析可以监测骨骼肌样品的微观结构变异特征。该技术可用于快速评估和定量监测食品工业中的肉类品质。

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