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An axis of rotation alignment system for high-resolution pinhole SPECT imaging

机译:用于高分辨率针孔SPECT成像的旋转轴对准系统

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摘要

We developed a simple geometric calibration method for modified animal pinhole single photon emission computed tomography (SPECT) imaging systems using a laser alignment system that does not require additional calibration scans, and verified the feasibility of this system. An optical system consisting of a laser generator and a reflecting mirror, and an alignment method using this system were developed. After laser alignment had been completed, SPECT scans of a Tc-99m line source were performed. After acquiring data with complete alignment, the rotation stage was moved along the y-axis (parallel to the detector plane) to acquire off-axis data. Using these on- and off-axis settings, a micro-performance phantom with hot-rod inserts was scanned after filling with Tc-99m solution. Reconstructed images of the line source and the hot-rod phantom showed that image degradation was minimized when the rotation center was completely aligned using our system. The spatial resolution of the reconstructed image measured using the line source was finest under complete alignment. Under this condition, the smallest hot rod (1.2 mm diameter) was resolved in the SPECT image acquired using a 0.5 mm pinhole aperture. The effects of misalignment were clearly observable in off-axis images; only hot rods with more than 3.2 mm diameter were resolved in 1 mm off-axis image whereas there were no resolvable hot rods with more than 2mm off-axis image. This system of which the feasibility was verified in the present study will be useful for low-cost molecular imaging studies using single photon emitting tracers.
机译:我们使用不需要额外校准扫描的激光对准系统,为改良的动物针孔单光子发射计算机断层扫描(SPECT)成像系统开发了一种简单的几何校准方法,并验证了该系统的可行性。开发了由激光发生器和反射镜组成的光学系统以及使用该系统的对准方法。激光对准完成后,对Tc-99m线源进行SPECT扫描。在获取完全对齐的数据之后,旋转台沿y轴(平行于探测器平面)移动以获取离轴数据。使用这些轴上和轴外设置,在填充Tc-99m溶液后,对带有热棒插入件的微型体模进行了扫描。线源和热棒体模的重建图像显示,当使用我们的系统完全对准旋转中心时,图像质量降到最低。在完全对准的情况下,使用线源测量的重建图像的空间分辨率最高。在这种条件下,最小的热棒(直径为1.2毫米)在使用0.5毫米针孔孔径获取的SPECT图像中分辨出来。在离轴图像中可以明显观察到未对准的影响。只有直径大于3.2 mm的热棒在离轴1 mm的图像中被分辨,而没有可分辨的热棒离轴图像大于2 mm。该系统的可行性在本研究中得到了验证,将对使用单光子发射示踪剂的低成本分子成像研究有用。

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