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Excitation-resolved fluorescence tomography with simplified spherical harmonics equations

机译:具有简化球谐方程的激发分辨荧光层析成像

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Fluorescence tomography (FT) reconstructs the three-dimensional (3D) fluorescent reporter probe distribution inside biological tissue. These probes target molecules of biological function, e.g. cell surface receptors or enzymes, and emit fluorescence light upon illumination with an external light source. The fluorescence light is detected on the tissue surface and a source reconstruction algorithm based on the simplified spherical harmonics (SP N) equations calculates the unknown 3D probe distribution inside tissue. While current FT approaches require multiple external sources at a defined wavelength range, the proposed FT method uses only a white light source with tunable wavelength selection for fluorescence stimulation and further exploits the spectral dependence of tissue absorption for the purpose of 3D tomographic reconstruction. We will show the feasibility of the proposed hyperspectral excitation-resolved fluorescence tomography method with experimental data. In addition, we will demonstrate the performance and limitations of such a method under ideal and controlled conditions by means of a digital mouse model and synthetic measurement data. Moreover, we will address issues regarding the required amount of wavelength intervals for fluorescent source reconstruction. We will explore the impact of assumed spatially uniform and nonuniform optical parameter maps on the accuracy of the fluorescence source reconstruction. Last, we propose a spectral re-scaling method for overcoming the observed limitations in reconstructing accurate source distributions in optically non-uniform tissue when assuming only uniform optical property maps for the source reconstruction process. ? 2011 Institute of Physics and Engineering in Medicine Printed in the UK.
机译:荧光层析成像(FT)可重建生物组织内部的三维(3D)荧光报告分子探针分布。这些探针靶向生物学功能的分子,例如分子标记。细胞表面受体或酶,并在外部光源照射下发出荧光。在组织表面上检测到荧光,并且基于简化球谐函数(SP N)方程的光源重建算法计算出组织内部未知的3D探针分布。虽然当前的FT方法需要在定义的波长范围内使用多个外部光源,但所提出的FT方法仅使用具有可调波长选择的白光源进行荧光刺激,并进一步利用组织吸收的光谱依赖性进行3D层析成像重建。我们将通过实验数据证明提出的高光谱激发分辨荧光层析成像方法的可行性。此外,我们将通过数字鼠标模型和综合测量数据来证明这种方法在理想和受控条件下的性能和局限性。此外,我们将解决有关荧光源重建所需的波长间隔数量的问题。我们将探索假定的空间均匀和不均匀光学参数图对荧光源重建精度的影响。最后,我们提出了一种光谱重新定标方法,该方法可在仅假设光源重建过程的均匀光学特性图时克服在光学不均匀组织中重建精确光源分布时所观察到的限制。 ? 2011年英国医学物理与工程研究所在英国印刷。

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