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A Quantitative Reconstruction Software Suite for SPECT Imaging

机译:用于SPECT成像的定量重建软件套件

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Quantitative Single Photon Emission Tomography (SPECT) imaging allows for measurement of activity concentrations of a given radiotracer in vivo. Although SPECT has usually been perceived as non-quantitative by the medical community, the introduction of accurate CT based attenuation correction and scatter correction from hybrid SPECT/CT scanners has enabled SPECT systems to be as quantitative as Positron Emission Tomography (PET) systems. We implemented a software suite to reconstruct quantitative SPECT images from hybrid or dedicated SPECT systems with a separate CT scanner. Attenuation, scatter and collimator response corrections were included in an Ordered Subset Expectation Maximization (OSEM) algorithm. A novel scatter fraction estimation technique was introduced. The SPECT/CT system was calibrated with a cylindrical phantom and quantitative accuracy was assessed with an anthropomorphic phantom and a NEMA/IEC image quality phantom. Accurate activity measurements were achieved at an organ level. This software suite helps increasing quantitative accuracy of SPECT scanners.
机译:定量单光子发射断层扫描(SPECT)成像可测量给定放射性示踪剂在体内的活性浓度。尽管SPECT通常被医学界认为是非定量的,但是从混合SPECT / CT扫描仪中引入基于精确CT的衰减校正和散射校正已使SPECT系统像正电子发射断层扫描(PET)系统一样具有定量性。我们实施了一套软件套件,以使用单独的CT扫描仪从混合或专用SPECT系统重建定量SPECT图像。衰减,散射和准直仪响应校正包含在有序子集期望最大化(OSEM)算法中。介绍了一种新颖的散射分数估计技术。用圆柱体模校准SPECT / CT系统,并使用拟人体模和NEMA / IEC图像质量体模评估定量准确性。在器官水平实现了准确的活动测量。该软件套件有助于提高SPECT扫描仪的定量精度。

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