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Geometric Characterization of Multi-Axis Multi-Pinhole SPECT

机译:多轴多针孔SPECT的几何表征

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摘要

A geometric model and calibration process are developed for SPECT imaging with multiple pinholes and multiple mechanical axes. Unlike the typical situation where pinhole collimators are mounted directly to rotating gamma ray detectors, this geometric model allows for independent rotation of the detectors and pinholes, for the case where the pinhole collimator is physically detached from the detectors. This geometric model is applied to a prototype small animal SPECT device with a total of 22 pinholes and which uses dual clinical SPECT detectors. All free parameters in the model are estimated from a calibration scan of point sources and without the need for a precision point source phantom. For a full calibration of this device, a scan of four point sources with 360° rotation is suitable for estimating all 95 free parameters of the geometric model. After a full calibration, a rapid calibration scan of two point sources with 180° rotation is suitable for estimating the subset of 22 parameters associated with repositioning the collimation device relative to the detectors. The high accuracy of the calibration process is validated experimentally. Residual differences between predicted and measured coordinates are normally distributed with 0.8 mm full width at half maximum and are estimated to contribute 0.12 mm root mean square to the reconstructed spatial resolution. Since this error is small compared to other contributions arising from the pinhole diameter and the detector, the accuracy of the calibration is sufficient for high resolution small animal SPECT imaging.
机译:开发了用于具有多个针孔和多个机械轴的SPECT成像的几何模型和校准过程。与通常将针孔准直仪直接安装到旋转的伽马射线探测器上的典型情况不同,对于针孔准直仪物理上与探测器分离的情况,此几何模型允许探测器和针孔独立旋转。该几何模型应用于总共22个针孔的原型小型动物SPECT设备,并使用双重临床SPECT检测器。该模型中的所有自由参数均通过对点源的校准扫描进行估算,而无需精确的点源体模。为了对该设备进行全面校准,适合360度旋转的四个点源扫描适合估算几何模型的所有95个自由参数。完全校准后,对两个点源进行180°旋转的快速校准扫描适用于估计与将准直设备相对于检测器重新放置相关的22个参数的子集。校准过程的高精度已通过实验验证。预测坐标和测量坐标之间的残差通常以半峰全宽0.8 mm分布,并且估计对重建的空间分辨率贡献0.12 mm均方根。由于与由针孔直径和检测器引起的其他影响相比,此误差很小,因此校准的精度对于高分辨率小动物SPECT成像是足够的。

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