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Human tissue diagnostics for physiological information using Hyperspectral Image model

机译:使用高光谱图像模型对人体组织进行生理信息诊断

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Hyperspectral imaging is a novel technology for obtaining both spatial and spectral information in the area of aerospace and military industries for last 20 years. The multifusion, multispectral, hyperspectral and polarimetric imaging can provide both anatomical and physiological or metabolic information; it can play an important role in the development of molecular imaging technologies with enhanced specificity and sensitivity, capable of identifying the presence versus absence of cancer, detection of margins, stage, distribution, and type of cancer, but most importantly, techniques capable of assessing the progress of the disease and its response to treatment. Hyperspectral Image modeling provides practical alternatives for the field measurements in human tissue sample due to sample coupling problems and heavy absorption due to protein and water in UV and NIR regions respectively in the region of therapeutic window. In this paper we have proposed the Lorentz Oscillators techniques to generate the multivariate signal for a pixel signature over spectrum channel of interest. The model has been demonstrated to synthesize the image with proper signature for the pixel. The spectra having customized signatures are generated using proper values of the central frequency, Strength of Oscillators and Width of oscillators. These models can be customized for the specific vision under observation and serialized for the quality, intrusion or diagnostics using pattern recognition principle for both anatomical and physiological information in human tissue.
机译:高光谱成像是一种用于获取过去20年中航空航天和军事工业领域的空间和光谱信息的新颖技术。多融合,多光谱,高光谱和极化成像可以提供解剖学,生理学或代谢信息;它在提高特异性和敏感性的分子成像技术的发展中可以发挥重要作用,能够识别癌症的存在与否,检测边界,阶段,分布和癌症类型,但最重要的是,能够评估疾病的进展及其对治疗的反应。由于样品耦合问题以及治疗窗口区域中UV和NIR区域中蛋白质和水的大量吸收,高光谱图像建模为人体组织样品的现场测量提供了实用的替代方法。在本文中,我们提出了Lorentz振荡器技术来为感兴趣的频谱通道上的像素签名生成多元信号。该模型已被证明可以合成具有适当像素特征的图像。使用中心频率,振荡器强度和振荡器宽度的适当值可以生成具有自定义特征的频谱。这些模型可以针对正在观察的特定视觉进行定制,并使用模式识别原理针对人类组织中的解剖学和生理学信息针对质量,入侵或诊断进行序列化。

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