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Crosstalk Reduction Using a Dual Energy Window Scatter Correction in Compton Imaging

机译:在康普顿成像中使用双能量窗口散射校正来减少串扰

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摘要

Compton cameras can simultaneously detect multi-isotopes; however, when simultaneous imaging is performed, crosstalk artifacts appear on the images obtained using a low-energy window. In conventional single-photon emission computed tomography, a dual energy window (DEW) subtraction method is used to reduce crosstalk. This study aimed to evaluate the effectiveness of employing the DEW technique to reduce crosstalk artifacts in Compton images obtained using low-energy windows. To this end, in this study, we compared reconstructed images obtained using either a photo-peak window or a scatter window by performing image subtraction based on the differences between the two images. Simulation calculations were performed to obtain the list data for the Compton camera using a 171 and a 511 keV point source. In the images reconstructed using these data, crosstalk artifacts were clearly observed in the images obtained using a 171 keV photo-peak energy window. In the images obtained using a scatter window (176–186 keV), only crosstalk artifacts were visible. The DEW method could eliminate the influence of high-energy sources on the images obtained with a photo-peak window, thereby improving quantitative capability. This was also observed when the DEW method was used on experimentally obtained images.
机译:康普顿相机可以同时检测多种同位素;然而,当执行同时成像时,串扰伪像出现在使用低能量窗口获得的图像上。在常规的单光子发射计算机断层扫描中,使用双能量窗(DEW)减法来减少串扰。这项研究旨在评估采用DEW技术减少使用低能量窗口获得的康普顿图像中的串扰伪像的有效性。为此,在这项研究中,我们通过基于两个图像之间的差异执行图像减法,比较了使用峰峰值窗口或散射窗口获得的重建图像。使用171和511 keV点源进行仿真计算以获得康普顿相机的列表数据。在使用这些数据重建的图像中,在使用171 keV峰峰值能量窗口获得的图像中清晰地观察到串扰伪像。在使用散射窗口(176–186 keV)获得的图像中,只有串扰伪像可见。 DEW方法可以消除高能量源对通过峰峰值窗口获得的图像的影响,从而提高定量能力。当在实验获得的图像上使用DEW方法时,也可以观察到这一点。

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