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Direct reconstruction method for time-domain fluorescence molecular lifetime tomography

机译:时域荧光分子寿命层析成像的直接重建方法

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For the reconstruction of time-domain fluorescence molecular lifetime tomography, conventional methods based on the Laplace or Fourier transform utilize only part of the information from the measurement data, and rely on the selection of transformation factors. To make the best of all the measurement data, a direct reconstruction algorithm is proposed. The fluorescence yield map is first reconstructed with a full-time gate, and then an objective function for the inverse lifetime tomography (instead of the lifetime) is developed so as to avoid dealing with the singularity of the zero points in the lifetime image. Through simulations and physical phantom experiments, the proposed algorithm is demonstrated to have high localization accuracy for fluorescent targets, high quantification accuracy for fluorescence lifetime, and good contrast between different fluorescence targets. (C) 2015 Optical Society of America
机译:对于时域荧光分子寿命层析成像的重建,基于拉普拉斯或傅立叶变换的常规方法仅利用来自测量数据的部分信息,并依赖于变换因子的选择。为了充分利用所有测量数据,提出了一种直接重建算法。首先用全时门重建荧光产量图,然后开发逆寿命断层扫描(而不是寿命)的目标函数,以避免处理寿命图像中零点的奇异性。通过仿真和物理幻象实验,证明了该算法具有较高的荧光目标定位精度,较高的荧光寿命定量精度以及不同荧光目标之间的良好对比度。 (C)2015年美国眼镜学会

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