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Quantification in simultaneous (99m)Tc/(123)I brain SPECT using generalized spectral factor analysis: a Monte Carlo study.

机译:使用广义光谱因子分析在同时(99m)Tc /(123)I脑SPECT中进行定量:蒙特卡洛研究。

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In SPECT, simultaneous (99m)Tc/(123)I acquisitions allow comparison of the distribution of two radiotracers in the same physiological state, without any image misregistration, but images can be severely distorted due to cross-talk between the two isotopes. We propose a generalized spectral factor analysis (GSFA) method for solving the cross-talk issue in simultaneous (99m)Tc/(123)I SPECT. In GSFA, the energy spectrum of the photons in any pixel is expressed as a linear combination of five common spectra: (99m)Tc and (123)I photopeaks and three scatter spectra. These basis spectra are estimated from a factor analysis of all spectra using physical priors (e.g. Klein-Nishina distributions). GSFA was evaluated on (99m)Tc/(123)I Monte Carlo simulated data and compared to images obtained using recommended spectral windows (WIN) and to the gold standard (GS) images (scatter-free, cross-talk-free and noise-free). Using GSFA, activity concentration differed by less than 9% compared to GS values against differences from -23% to 110% with WIN in the (123)I and (99m)Tc images respectively. Using GSFA, simultaneous (99m)Tc/(123)I imaging can yield images of similar quantitative accuracy as when using sequential and scatter-free (99m)Tc/(123)I imaging in brain SPECT.
机译:在SPECT中,同时进行的(99m)Tc /(123)I采集可以比较处于相同生理状态的两种放射性示踪剂的分布,而没有任何图像配准不良,但是由于这两种同位素之间的串扰,图像可能会严重失真。我们提出了一种通用频谱因子分析(GSFA)方法来解决同时(99m)Tc /(123)I SPECT中的串扰问题。在GSFA中,任何像素中光子的能谱表示为五个常见光谱的线性组合:(99m)Tc和(123)I光电峰值和三个散射光谱。这些基本光谱是使用物理先验(例如Klein-Nishina分布)通过对所有光谱进行因子分析得出的。在(99m)Tc /(123)I蒙特卡洛模拟数据上评估了GSFA,并将其与使用推荐光谱窗(WIN)获得的图像和金标准(GS)图像(无散射,无串扰和噪声)进行了比较-自由)。使用GSFA,与GS值相比,活性浓度相差不到9%,而WIN在(123)I和(99m)Tc图像中分别从-23%到110%。使用GSFA,同时(99m)Tc /(123)I成像可产生与在脑SPECT中使用连续无散射(99m)Tc /(123)I成像时相似的定量精度图像。

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