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Cameras shapes for medical imaging Compton cameras

机译:医学成像康普顿相机的相机形状

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The shape of the detectors that comprise a Compton camera largely determines the geometric distribution of the set of data that is measured. It is our hypothesis that the geometric distribution of a set of data determines the informational contents of the data. The objective of the research reported here is to produce evidence that supports this hypothesis. We use a novel approach to measure the informational content of a set of data; namely, we will use the rank of the system matrix, which stems from the data set, as a numerical measure of the informational content of the set. The data was simulated using the surface integral model for Compton camera data. When just the data that scatter parallel to the face of the camera was used, it was found that the resulting system matrix was full rank. When just the data that scatter perpendicular to the face of the camera was used, it was found that the resulting system matrix was substantially less than full rank. Additional work is needed to determine if full rank matrices can be obtained using the conventional camera design that consists of two detectors that are planar shaped and parallel to each other.
机译:包含康普顿相机的检测器的形状在很大程度上决定了所测数据集的几何分布。我们的假设是,一组数据的几何分布决定了数据的信息内容。本文报道的研究目的是提供支持这一假设的证据。我们使用一种新颖的方法来测量一组数据的信息内容。也就是说,我们将使用源自数据集的系统矩阵的等级,作为对该集信息内容的数值度量。使用针对康普顿相机数据的表面积分模型模拟数据。当仅使用平行于照相机面部散布的数据时,发现所得的系统矩阵是完整等级的。当仅使用垂直于照相机面部散布的数据时,发现所得到的系统矩阵明显小于满秩。需要额外的工作来确定是否可以使用由两个平面形状且彼此平行的检测器组成的常规摄像机设计来获得满秩矩阵。

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