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首页> 外文期刊>European Journal of Nuclear Medicine and Molecular Imaging >Three-pinhole collimator to improve axial spatial resolution and sensitivity in pinhole SPECT.
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Three-pinhole collimator to improve axial spatial resolution and sensitivity in pinhole SPECT.

机译:三针孔准直仪可改善针孔SPECT中的轴向空间分辨率和灵敏度。

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摘要

PURPOSE: The aim of this study was to improve the uniformity of the axial spatial resolution and sensitivity in pinhole single-photon emission computed tomography (SPECT) and to extend the axial field of view, by using a dedicated three-pinhole collimator. METHODS: A rectangular tungsten plate with three pinhole apertures of 1.5 mm diameter was designed to image a cylindrical field of view of 55 mm diameter and 160 mm axial length using a clinical gamma camera. To evaluate the non-uniformity of spatial resolution and noise, a multiple-disk phantom was built. The phantom was filled with Tc-99m, and data were acquired using a circular orbit and reconstructed with a dedicated iterative reconstruction algorithm. The axial spatial resolution together with the noise was measured in each disk. These measurements were compared to a single-pinhole system using an identical acquisition geometry and reconstruction. RESULTS: At the central slice, a spatial resolution of 2.7 mm was observed for both the three-pinhole and single-pinhole geometries. At 17.5 mm from the central slice, the axial spatial resolution deteriorated to 10.3 mm when using a single pinhole, while the spatial resolution remained 2.7 mm for the three-pinhole system. In the central slice, 19% noise was observed for both geometries. At 31.5 mm from this central slice, the noise remained 19% for the three-pinhole geometry, while it increased to 32% using a single pinhole. CONCLUSION: The presented three-pinhole collimator improves the uniformity of the axial spatial resolution and sensitivity in pinhole SPECT and consequently extends the axial field of view, a requirement for whole-body small-animal imaging.
机译:目的:本研究的目的是通过使用专用的三针孔准直仪来改善针孔单光子发射计算机断层扫描(SPECT)中轴向空间分辨率和灵敏度的均匀性,并扩展轴向视场。方法:使用临床伽马相机设计了一个矩形的钨板,该板具有三个直径为1.5 mm的针孔,可成像直径为55 mm,轴向长度为160 mm的圆柱视场。为了评估空间分辨率和噪声的不均匀性,构建了多磁盘幻影。幻影充满了Tc-99m,并使用圆形轨道获取数据,并使用专用的迭代重建算法对其进行了重建。在每个磁盘中测量轴向空间分辨率以及噪声。使用相同的采集几何形状和重建,将这些测量结果与单针孔系统进行比较。结果:在中心切片,三个针孔和单个针孔的几何形状均观察到2.7 mm的空间分辨率。在距中心切片17.5毫米处,使用单个针孔时的轴向空间分辨率降低至10.3毫米,而对于三针孔系统,轴向空间分辨率则保持为2.7毫米。在中央切片中,两种几何形状均观察到19%的噪声。在距中心切片31.5毫米处,三个针孔几何形状的噪声保持19%,而使用单个针孔则噪声增加至32%。结论:提出的三针孔准直仪提高了针孔SPECT轴向空间分辨率和灵敏度的均匀性,从而扩展了轴向视场,这是对全身小动物成像的要求。

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