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Quantitative fluorescence tomography with functional and structural a priori information

机译:具有功能和结构先验信息的定量荧光层析成像

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We demonstrate the necessity of functional and structural a priori information for quantitative fluorescence tomography (FT) with phantom studies. Here the functional a priori information is defined as the optical properties of the heterogeneous background that can be measured by a diffuse optical tomography (DOT) system. A CCD-based noncontact hybrid FT/DOT system that could take measurements at multiple views was built. Multimodality phantoms with multiple compartments were constructed and used in the experiments to mimic a heterogeneous optical background. A 3.6 mm diameter object deeply embedded in a heterogeneous optical background could be localized without any a priori information, but the recovered fluorophore concentration only reached one tenth of the true concentration. On the other hand, the true fluorophore concentration could be recovered when both functional and structural a priori information is utilized to guide and constrain the FT reconstruction algorithm.
机译:我们证明了功能和结构先验信息的必要性,以幻影研究定量荧光层析成像(FT)。在这里,功能先验信息被定义为可以通过漫射光学层析成像(DOT)系统测量的异质背景的光学性质。建立了一个基于CCD的非接触式混合FT / DOT系统,该系统可以在多个视角进行测量。构建具有多个隔室的多模态体模,并将其用于实验中以模拟异质光学背景。可以将深埋在异质光学背景中的直径为3.6 mm的物体定位,而无需任何先验信息,但是回收的荧光团浓度仅达到真实浓度的十分之一。另一方面,当功能和结构先验信息都用于指导和约束FT重建算法时,可以恢复真正的荧光团浓度。

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