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Animal SPECT imaging on a shared PET/SPECT ring detector with elliptical-pinhole collimator

机译:具有椭圆形针孔准直器的共用PET / SPECT环探测器上的动物SPECT成像

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In this study, animal SPECT imaging functionality was developed in Nucmed Inliview 3000 PET/SPECT/CT system with an elliptical-pinhole collimator in the shared PET/SPECT ring detector. The collimator was designed to allow simultaneous PET/SPECT dual-tracer imaging. It contains 5 pinhole rings with 10 pinholes per ring. The transverse plane of pinhole was designed to be elliptical to reduce the axial overlap of the SPECT projection. A modified sensitivity formulae for elliptical pinhole was derived and penetration effect was considered in this formulae. Helical SPECT data were acquired by rotating the collimator about the body axis and translating the animal bed along the same axis. Geometrical calibration was implemented to determine the actual parameters of multi-pinhole collimator. OS-EM algorithm was developed and the system matrix was obtained by analytical calculation with the modified sensitivity formulae for elliptical pinhole involved. The penumbra field of elliptical pinhole was defined. Significant artifact reduction was observed after incorporating the penumbra field effect in the reconstruction process. An ultra-micro hot-rod phantom study was performed. The 1.35 mm hot rods can be clearly identified from the reconstructed image. A whole-body mouse bone scan image was presented and shows that the whole skeleton and the vertebra can be clearly seen. A reasonable SPECT/CT fusion image was provided. We conclude that reliable SPECT images can be achieved with this PET/SPECT/CT system with the proposed collimator design and methodology development.
机译:在这项研究中,动物SPECT成像功能是在NUCMed Inliview 3000 PET / SPECT / CT系统中开发的,其中共用PET / SPECT环检测器中的椭圆形针孔准直器。准直器旨在允许同时宠物/ SPECT双跟踪成像。它含有5个针孔环,每环10个针孔。针孔的横向平面设计为椭圆形,以减小SPECT投影的轴向重叠。衍生椭圆形针孔的改性敏感性公式,在该公式中考虑了渗透效应。通过围绕主体轴线旋转准直器并沿相同轴线平移动物床来获取螺旋SPECT数据。实现了几何校准以确定多针孔准直器的实际参数。开发了OS-EM算法,并通过用涉及椭圆形针孔的改性灵敏度公式进行了系统矩阵。定义了椭圆形针孔的Penumbra领域。在重建过程中纳入PENUMBRA现场效应后观察到显着的伪影减少。进行超微热杆幻像研究。可以从重建的图像清楚地识别1.35mm热棒。提出了一种全身小鼠骨扫描图像,并表明可以清楚地看到整个骨架和椎骨。提供了合理的SPECT / CT融合图像。我们得出结论,通过该PET / SPECT / CT系统可以实现可靠的SPECT图像,其中具有提出的准直器设计和方法开发。

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