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Single and multipinhole collimator design evaluation method for small animal SPECT

机译:小动物SPECT单针孔准直器设计评估方法

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High resolution functional imaging of small animals is often obtained by single pinhole collimated SPECT with a circular acquisition orbit. However, the acquired data are incomplete. Multipinhole SPECT has the advantage of adding more information due to its improved sampling and possibly increases the resolution and the sensitivity. To evaluate different pinhole collimator designs a method is needed that tells how much information is missing, or equivalently, how well the animal can be reconstructed. In this paper we propose two methods to facilitate the evaluation process for single and multipinhole collimator designs. Firstly, we examine the quality of each post-processed MLEM reconstructed voxel by studying its linearized local impulse response (LLIR) and its (co)variance for a predefined target resolution. Secondly, since increasing the number of pinhole apertures may cause the projections to overlap, point and circular artifacts can occur in the reconstruction image. The position of these 'ghost points' and 'ghost circles' can be well predicted analytically. We also give some rules of thumb to estimate the (relative) intensity of the artifacts. The methods are validated with simulations.
机译:小型动物的高分辨率功能成像通常是通过具有圆形采集轨道的单针孔准直SPECT获得的。但是,获取的数据不完整。 Multipinhole SPECT的优点在于改进了采样功能,可增加更多信息,并可能提高分辨率和灵敏度。为了评估不同的针孔准直仪设计,需要一种方法来告诉您丢失了多少信息,或者等效地,可以很好地重建动物。在本文中,我们提出了两种方法来简化单针孔和多针孔准直器设计的评估过程。首先,我们通过研究线性化的局部脉冲响应(LLIR)及其对于预定目标分辨率的(协)方差,来检查每个后处理的MLEM重建体素的质量。其次,由于增加针孔的数量可能会导致投影重叠,因此在重建图像中可能会出现点状和圆形伪影。这些“鬼点”和“鬼圈”的位置可以通过分析很好地预测。我们还给出了一些经验法则来估计伪影的(相对)强度。该方法已通过仿真验证。

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