首页> 外文会议>Advanced Biomedical and Clinical Diagnostic Systems III; Progress in Biomedical Optics and Imaging; vol.6 no.7 >Analysis of biomedical properties of tissues by the entropy factor for the detection of pathological diseases
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Analysis of biomedical properties of tissues by the entropy factor for the detection of pathological diseases

机译:用熵因子分析组织的生物医学特性以检测病理疾病

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Imaging polarimetry is presently used in many different biomedical applications, like ophthalmology or dermatology, providing a non-invasive, non-contact and high-resolution diagnosis. Polarization techniques are based on the analysis of biological tissues by means of the Mueller matrix, which provides a complete description of the polarization properties, but this matrix does not supply a clear and comprehensive information about the physical and biological properties of tissues at first glance, and a slow and meticulous analysis of the matrix elements has to be accomplished to obtain a detailed characterization of their behavior. In this work, the entropy factor is defined and introduced for the analysis of biological tissues in order to handle one single parameter whose value is closely related to the tissue behavior, and therefore, provides a clearer analysis of the biological and physical modifications that take place in an unhealthy, old or heat-damaged tissue through its polarization characteristics. The entropy factor will be applied to the analysis of the Mueller matrices of different biological tissues obtained. Specifically, it is utilized for the characterization of different tissues, porcine tendon and rat tail, which has been analyzed in two situations, normal and burned, to observe if the entropy factor suffers a variation. This study is performed to provide a confident instrument to medical staff in biological and medical examination of tissues, so that a medical diagnosis can be realized through the study of this factor, providing in the next future an extra instrument for a complete development of optical biopsies by means of polarization techniques.
机译:成像偏振计目前用于许多不同的生物医学应用中,例如眼科或皮肤科,可提供非侵入性,非接触式和高分辨率诊断。极化技术基于通过Mueller矩阵对生物组织进行的分析,该矩阵提供了极化特性的完整描述,但是乍一看,该矩阵无法提供有关组织的物理和生物学特性的清晰,全面的信息,必须对矩阵元素进行缓慢而细致的分析,以获得其行为的详细表征。在这项工作中,定义并引入了熵因子以用于生物组织的分析,以便处理其值与组织行为密切相关的单个参数,因此可以对发生的生物学和物理变化提供更清晰的分析通过其极化特性在不健康,老旧或受热损坏的组织中熵因子将用于分析获得的不同生物组织的Mueller矩阵。具体而言,它用于表征不同的组织(猪腱和大鼠尾巴),已在正常和烧伤两种情况下进行了分析,以观察熵因子是否发生变化。进行这项研究的目的是为医务人员提供对组织进行生物和医学检查的信心,从而可以通过对该因素的研究来实现医学诊断,并在未来的将来为光学活检的全面发展提供额外的仪器通过极化技术。

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