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Characterizing microstructural features of biomedical samples by statistical analysis of Mueller matrix images

机译:穆勒矩阵图像统计分析表征生物医学样本的微观结构特征

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As one of the salient features of light, polarization contains abundant structural and optical information of media. Recently, as a comprehensive description of polarization property, the Mueller matrix polarimetry has been applied to various biomedical studies such as cancerous tissues detections. In previous works, it has been found that the structural information encoded in the 2D Mueller matrix images can be presented by other transformed parameters with more explicit relationship to certain microstructural features. In this paper, we present a statistical analyzing method to transform the 2D Mueller matrix images into frequency distribution histograms (FDHs) and their central moments to reveal the dominant structural features of samples quantitatively. The experimental results of porcine heart, intestine, stomach, and liver tissues demonstrate that the transformation parameters and central moments based on the statistical analysis of Mueller matrix elements have simple relationships to the dominant microstructural properties of biomedical samples, including the density and orientation of fibrous structures, the depolarization power, diattenuation and absorption abilities. It is shown in this paper that the statistical analysis of 2D images of Mueller matrix elements may provide quantitative or semi-quantitative criteria for biomedical diagnosis.
机译:作为光的突出特征之一,极化包含媒体的丰富结构和光学信息。最近,作为偏振性的综合描述,穆勒基质偏振物已被应用于各种生物医学研究,例如癌组织检测。在以前的作品中,已经发现,在2D穆勒矩阵图像中编码的结构信息可以由其他转换的参数呈现,其与某些微结构特征更明显。在本文中,我们介绍了一种统计分析方法,将2D穆勒矩阵图像转换为频率分布直方图(FDHS)及其中央矩定量地揭示样品的主导结构特征。猪心脏,肠,胃和肝组织的实验结果表明,基于穆勒基质元素的统计分析的转化参数和中枢矩具有与生物医学样本的主要微观结构特性的简单关系,包括纤维状的密度和取向结构,去极化功率,利用,吸收能力。在本文中示出了穆勒矩阵元件2D图像的统计分析可以为生物医学诊断提供定量或半定量标准。

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