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Feasibility studies of a high sensitivity, stationary dedicated cardiac SPECT with multi-pinhole collimators on a clinical dual-head scanner

机译:高灵敏度的可行性研究,临床双头扫描仪的多针孔准直器具有固定专用心脏SPECT

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In this study we proposed a novel design of the stationary multi-pinhole dedicated cardiac SPECT based on clinical dual-head scanner with high sensitivity and low cost for nuclear medicine myocardial perfusion imaging. The efficacy of proposed collimator design was confirmed by analytically calculating the sensitivity map of field of view (FOV) and the average resolution map weighted by each pinhole's sensitivity. We measured the spatial resolution and sensitivity of the proposed SPECT and low energy high resolution (LEHR) parallel-hole SPECT at central point with the same distance from the collimator with Monte Carlo simulation. A multi-pinhole MLEM reconstruction algorithm was developed with detector response and analytical pinhole projection model. The analytical projection of point source with delta model and pinhole projection model was compared with simulated projection by Gate. We simulated and reconstructed projections of two point with different location with no rotation, one step rotation and two step rotation and one uniform ellipsoid phantom, which covered the heart region. Analytically, the sensitivity was increased to 0.04% and average resolution was about 10 mm inside most of heart regions. The reconstruction spatial resolution of central point was 38% poorer than LEHR SPECT, while the sensitivity was increased by 10-fold, which was consistent with the analytical results. The comparison between the several pinholes' projection calculated with delta model, pinhole analytical model and simulation showed the pinhole analytical model agreed with the simulation in shape, especially when in oblique incidence. The reconstruction results of point source without rotation showed slight deformation on certain point source location. In contrast, with rotation, the deformation was suppressed and resolution was similar. However there was no significant difference in one step and two step rotation. The ellipsoid phantom reconstruction showed the imaging quality o- the proposed SPECT although with the expected artifact outside FOV. In conclusion, our initial results demonstrated the feasibility of high sensitivity imaging with proposed stationary multi-pinhole dedicated cardiac SPECT.
机译:在这项研究中,我们提出了基于临床的双头扫描仪具有灵敏度高,成本低的核医学心肌灌注显像静止多针孔专用SPECT心脏的新颖的设计。提出准直器设计的功效通过解析计算的视场(FOV)和由每个针孔的灵敏度加权的平均分辨率MAP字段的灵敏度地图确认。我们测量了空间分辨率和所提出的SPECT和低能量高分辨率(LEHR)在与从与蒙特卡罗模拟准直器的距离相等的中心点平行孔SPECT的灵敏度。一种多针孔MLEM重建算法用检测器响应和分析针孔投影模型开发的。与delta模型和针孔投影模型的点源的分析投影与由门模拟的投影进行比较。我们模拟和重建两点不同位置的预测没有旋转,一步一个脚印旋转和两步旋转和一个统一的椭圆形幻影,其中涵盖了心脏地区。分析,灵敏度提高到0.04%,平均分辨率为大约最里面的区域心脏为10毫米。中心点的重建空间分辨率比LEHR SPECT较差38%,而灵敏度增加了10倍,这与分析结果一致。与delta模型,针孔分析模型和仿真计算出的几个针孔的预测之间的比较显示出与在形状上模拟同意针孔分析模型,尤其是在倾斜入射时。点源的重构的结果,而不旋转显示对某些点源位置轻微变形。与此相反,旋转,变形被抑制和分辨率是相似的。但是有一个步骤和两步转动无显著差异。椭圆体模重建显示成像质量邻 - 所提出的SPECT虽然与FOV外部的预期伪影。总之,我们的初始结果表明高灵敏度成像的与所提出的固定多针孔专用心脏SPECT的可行性。

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