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Multispectral Imaging Analysis: Spectral Deconvolution and Applications in Biology

机译:多光谱成像分析:光谱反卷积及其在生物学中的应用

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Multispectral imaging has been in use for over half a century. Owing to advances in digital photographic technology, multispectral imaging is now used in settings ranging from clinical medicine to industrial quality control. Our efforts focus on the use of multispectral imaging coupled with spectral deconvolution for measurement of endogenous tissue fLuorophores and for animal tissue analysis by multispectral fluorescence, absorbance, and reflectance data. Multispectral reflectance and fluorescence images may be useful in evaluation of pathology in histological samples. For example, current hematoxyLin/eosin diagnosis limits spectral analysis to shades of red and blue/grey. It is possible to extract much more information using multispectral techniques. To collect this information, a series of filters or a device such as an acousto-optical tunable filter (AOTF) or liquid-crystal filter (LCF) can be used with a CCD camera, enabling collection of images at many more wavelengths than is possible with a simple filter wheel. In multispectral data processing the "unmixing" of reflectance or fluorescence data and analysis and the classification based upon these spectra is required for any classification. In addition to multispectral techniques, extraction of topological information may be possible by reflectance deconvolution or multiple-angle imaging, which could aid in accurate diagnosis of skin lesions or isolation of specific biological components in tissue. The goal of these studies is to develop spectral signatures that will provide us with specific and verifiable tissue structure/function information. In addition, relatively complex classification techniques must be developed so that the data are of use to the end user.
机译:多光谱成像已经使用了半个多世纪。由于数字照相技术的进步,多光谱成像现已用于从临床医学到工业质量控制的各种环境中。我们的工作重点是将多光谱成像与光谱反卷积结合使用,以测量内源性组织荧光团,并通过多光谱荧光,吸光度和反射率数据对动物组织进行分析。多光谱反射率和荧光图像可用于评估组织学样本的病理学。例如,当前的苏木精/曙红诊断将光谱分析限制为红色和蓝色/灰色阴影。使用多光谱技术可以提取更多的信息。为了收集这些信息,可以将一系列滤光片或诸如声光可调滤光片(AOTF)或液晶滤光片(LCF)之类的设备与CCD相机配合使用,从而可以收集比可能更多的波长的图像用一个简单的滤光轮。在多光谱数据处理中,反射或荧光数据的“混合”以及任何分类都需要基于这些光谱的分析和分类。除了多光谱技术外,还可以通过反射反褶积或多角度成像来提取拓扑信息,这有助于准确诊断皮肤病变或分离组织中特定的生物成分。这些研究的目的是开发能为我们提供特定且可验证的组织结构/功能信息的光谱特征。另外,必须开发相对复杂的分类技术,以便最终用户可以使用该数据。

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