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Multi-wavelength Fluorescence Tomography

机译:多波长荧光层析成像

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The strong scattering and absorption of light in biological tissue makes it challenging to model the propagation of light, especially in deep tissue. This is especially true in fluorescent tomography, which aims to recover the internal fluorescence source distribution from the measured light intensities on the surface of the tissue. The inherently ill-posed and underdetermined nature of the inverse problem along with strong tissue scattering makes Fluorescence Tomography (FT) extremely challenging. Previously, multispectral detection fluorescent tomography (FT) has been shown to improve the image quality of FT by incorporating the spectral filtering of biological tissue to provide depth information to overcome the inherent absorption and scattering limitations. We investigate whether multi-wavelength fluorescent tomography can be used to distinguish the signals from multiple fluorophores with overlapping fluorescence spectrums using a unique near-infrared (NIR) swept laser. In this work, a small feasibility study was performed to see whether multi-wavelength FT can be used to detect subtle shifts in the absorption spectrum due to differences in fluorophore microenvironment.
机译:光在生物组织中的强散射和吸收使得对光的传播(尤其是在深部组织中)的传播进行建模具有挑战性。在荧光层析成像中尤其如此,其目的是从组织表面上测得的光强度恢复内部荧光源的分布。反问题固有的不适定性和不确定性以及强大的组织散射特性使荧光层析成像(FT)极具挑战性。以前,多光谱检测荧光层析成像(FT)已被证明可以通过结合生物组织的光谱过滤来提供深度信息,从而克服固有的吸收和散射限制,从而提高FT的图像质量。我们调查是否可以使用独特的近红外(NIR)扫频激光器,将多波长荧光层析成像技术用于区分来自具有重叠荧光光谱的多个荧光团的信号。在这项工作中,进行了一项小规模的可行性研究,以查看由于荧光团微环境的差异,多波长FT是否可用于检测吸收光谱中的细微变化。

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