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Optical characterization of murine model's in-vivo skin using Mueller matrix polarimetric imaging

机译:使用Mueller矩阵偏振成像鼠模型鼠模型的光学表征

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Mueller matrix polarimetric imaging (MMPI) provides a complete characterization of an anisotropic optical medium. Subsequent single value decomposition allows image interpretation in terms of basic optical anisotropies, such as depolarization, diattenuation, and retardance. In this work, healthy in-vivo skin at different anatomical locations of a biological model {Rattus norvegicus) was imaged by the MMPI technique using 532nm coherent illumination. The body parts under study were back, abdomen, tail, and calvaria. Because skin components are randomly distributed and skin thickness depends on its location, polarization measures arise from the average over a single detection element (pixel) and on the number of free optical paths, respectively. Optical anisotropies over the imaged skin indicates, mainly, the presence of components related to the physiology of the explored region. In addition, a MMPI-based comparison between a tumor on the back of one test subject and proximal healthy skin was made. The results show that the single values of optical anisotropies can be helpful in distinguishing different areas of in-vivo skin and also lesions.
机译:Mueller矩阵偏振成像(MMPI)提供各向异性光学介质的完整表征。随后的单值分解允许根据基本光学各向异性的图像解释,例如去极化,利用和延迟。在这项工作中,通过使用532nm相干照射的MMPI技术对生物学模型(Rattus Norvegicus)的不同解剖学位置处的健康体内皮肤进行成像。研究的身体部位又回来了,腹部,尾部和卡瓦里亚。由于皮肤部件是随机分布的,并且皮肤厚度取决于其位置,所以分别从单个检测元件(像素)的平均值和自由光路的数量来产生极化措施。过滤皮肤的光学各向异性表明,主要是存在与探索区域的生理学相关的组件。此外,制备了一个测试对象背面和近端健康皮肤的肿瘤之间的基于MMPI的比较。结果表明,光学各向异性的单一值可以有助于区分体内皮肤和病变的不同区域。

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