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The incorporation of organ uptake into dynamic SPECT (dSPECT) image reconstruction

机译:将器官摄取纳入动态SPECT(dSPECT)图像重建中

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Dynamic SPECT (dSPECT) is an image reconstruction method that is capable of determining the kinetic rates of various physiological processes regionally in three dimensions while still maintaining the simple acquisition protocol of a single, slow camera rotation. Through the use of constraints in a constrained least squares routine (C-LS), we are able to determine both the rate of tracer uptake, as well as the rate of washout over the acquisition time of the SPECT scan. In both computer simulations and experiments, the C-LS approach has been shown to reproduce quite accurately, both the spatial and temporal behaviour of activity distribution. In dynamic heart simulations including attenuation and Poisson noise, similarity values have been obtained ranging from 0.328 (single head, 180/spl deg/ rotation) to 0.476 (triple head, 180/spl deg/ rotation). Simple phantom experiments have provided even better results of between 0.911 and 0.992 (dual head, 90/spl deg/ rotation). In a preliminary patient study of renal dynamics, results have been comparable to planar imaging, but with increased contrast.
机译:动态SPECT(dSPECT)是一种图像重建方法,能够在三个维度上局部确定各种生理过程的动力学速率,同时仍保持单个缓慢照相机旋转的简单采集协议。通过在约束最小二乘子程序(C-LS)中使用约束,我们能够确定示踪剂摄取率以及SPECT扫描采集时间内的洗脱率。在计算机仿真和实验中,C-LS方法都已被证明可以非常精确地重现活动分布的时空行为。在包括衰减和泊松噪声的动态心脏仿真中,已获得相似度值,范围从0.328(单头,180 / spl deg /旋转)到0.476(三头,180 / spl deg /旋转)。简单的体模实验提供了更好的结果,介于0.911和0.992之间(双头,90 / spl度/旋转)。在对肾脏动力学的初步患者研究中,结果与平面成像相当,但对比度增加。

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