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Quantitative image reconstruction using position-dependent scatter correction in single photon emission CT

机译:单光子发射CT中基于位置的散射校正的定量图像重建

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Elimination of scattered photons from acquired counts is necessary for reconstructing a quantitative SPECT (single photon emission computed tomography) image. To perform correction of the scattered photons, the authors have developed a novel scatter correction method considering the local scatter fraction at each pixel in a planar image and evaluated its validity by simulations using numerical phantoms. In the present work, they evaluate the parameters used in the correction method, i.e., the width of a main window and subwindows, and the location of the subwindows. They show the results of experiments using a myocardial phantom and preliminary clinical studies using a commercially available gamma-camera system equipped with special hardware. In the clinical studies, a new Tc-99m myocardial perfusion imaging agent (P-53) was used. These results show that quantitative measurement of activity in clinical study is possible without adding data acquisition/processing time.
机译:为了重建定量SPECT(单光子发射计算机断层扫描)图像,必须从采集的计数中消除散射光子。为了执行散射光子的校正,作者开发了一种新颖的散射校正方法,该方法考虑了平面图像中每个像素处的局部散射分数,并通过使用数字体模进行仿真来评估其有效性。在当前工作中,他们评估校正方法中使用的参数,即主窗口和子窗口的宽度以及子窗口的位置。他们显示了使用心肌模型的实验结果以及使用配备有特殊硬件的可商购的伽马相机系统进行的初步临床研究的结果。在临床研究中,使用了一种新的Tc-99m心肌灌注显像剂(P-53)。这些结果表明,在不增加数据采集/处理时间的情况下就可以对临床研究活动进行定量测量。

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