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Ex-vivo characterization of human healthy colon and colorectal cancer by multispectral Mueller polarimetric imaging and its polar decomposition

机译:多光谱橡胶偏振成像及其极地分解的人健康结肠和结直肠癌的ex-体内表征

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Mueller matrix polarimetric imaging (MMPI) provides precise microstructural information of biological samples and has been applied to the detections of various abnormal tissues. Once the Mueller matrix is determined for a particular anisotropic material, polar decomposition is applied to determine the singular values of optical anisotropies, such as depolarization, diattenuation, retardance and optical rotation. In this work, ex-vivo cancerous and noncancerous tissues were imaged by the MMPI technique using 3 different radiation wavelengths (460, 532 and 633 nm). The samples under study were cancerous and noncancerous tissues from colon. The results show that the optical anisotropies from biological samples are different. As we know, cancer changes the structure and concentration of biomedical substances from healthy tissue. One of the structures that is affected by cancer is collagen. This structure contributes to the diatenuation and retardance values. Therefore the values of diatenuation and retardance are different from the malignant and healthy tissues. We demonstrate that MMPI and polar decomposition are useful tools to discriminate healthy tissue and cancerous tissue from different parts of the body.
机译:Mueller矩阵偏振成像(MMPI)提供生物样品的精确微结构信息,并已应用于各种异常组织的检测。一旦穆勒矩阵针对特定各向异性材料确定的,极分解被施加到确定的光学各向异性,如去极化,双衰减,延迟和旋光性的奇异值。在这项工作中,通过使用3种不同的辐射波长(460,532和633nm),通过MMPI技术对前体内癌和非癌组织进行成像。研究的样品是来自结肠的癌性和非癌症组织。结果表明,生物样品的光学各向异性是不同的。众所周知,癌症从健康组织改变生物医学的结构和浓度。受癌症影响的结构之一是胶原蛋白。该结构有助于达棱和延迟值。因此,抗序和延迟的值与恶性和健康组织不同。我们证明MMPI和极地分解是鉴别来自身体不同部位的健康组织和癌组织的有用工具。

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