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Multi-Pinhole SPECT Calibration: Influence of Data Noise and Systematic Orbit Deviations

机译:多针孔SPECT校准:数据噪声和系统轨道偏差的影响

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摘要

The geometry of a single pinhole SPECT system with circular orbit can be uniquely determined from a measurement of three point sources, provided that at least two inter-point distances are known. In contrast, it has been shown mathematically that, for a multi-pinhole SPECT system with circular orbit, only two point sources are needed, and the knowledge of the distance between them is not required. In this paper, we report that this conclusion only holds if the motion of the camera is perfectly circular. In reality, the detector heads systematically slightly deviate from the circular orbit, which may introduce non-negligible bias in the estimated parameters and degrade the reconstructed image. An analytical linear model was extended to estimate the influence of both data noise and systematic deviations on the accuracy of the calibration and on the image quality of the reconstruction. It turns out that applying the knowledge of the distances greatly reduces the reconstruction error, especially in the presence of systematic deviations. In addition, we propose that instead of using the information about the distances between the point sources, it is more straightforward to use the knowledge about the distances between the pinhole apertures during multi-pinhole calibration. The two distance-fixing approaches yield similar reconstruction accuracy. Our theoretical results are supported by reconstruction images of a Jaszczak-type phantom scan.
机译:如果已知至少两个点间距离,则可以通过测量三个点源来唯一确定具有圆形轨道的单个针孔SPECT系统的几何形状。相反,在数学上已经表明,对于具有圆形轨道的多针孔SPECT系统,仅需要两个点源,并且不需要知道它们之间的距离。在本文中,我们报告只有在摄像机的运动完全为圆形时,这个结论才成立。实际上,探测器的头部会系统地略微偏离圆形轨道,这可能会在估算参数中引入不可忽略的偏差,并降低重建后的图像的质量。扩展了分析线性模型,以估计数据噪声和系统偏差对校准精度和重建图像质量的影响。事实证明,应用距离知识可以大大减少重建误差,尤其是在存在系统偏差的情况下。另外,我们建议,在多针孔校准过程中,使用关于针孔孔径之间距离的知识可以更直接,而不是使用有关点源之间距离的信息。两种固定距离的方法产生相似的重建精度。 Jaszczak型幻影扫描的重建图像为我们的理论结果提供了支持。

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