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首页> 外文期刊>IEEE Transactions on Nuclear Science >High spatial resolution reconstruction technique for SPECT using a fan-beam collimator
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High spatial resolution reconstruction technique for SPECT using a fan-beam collimator

机译:使用扇束准直器的SPECT高空间分辨率重建技术

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The physical characteristics of the collimator cause degradation of resolution with increasing distance from the collimator surface. A convolutional backprojection algorithm is derived for fan beam single-photon-emission computed tomography (SPECT) data without rebinding into parallel beam geometry. The projections are filtered and then backprojected into the area within an isosceles triangle whose vertex is the focal point of the fan-beam and whose base is the fan-beam collimator face, and outside of the circle whose center is located midway between the focal point and the center of rotation and whose diameter is the distance between the focal point and the center of rotation. Consequently, the backprojected area is close to the collimator surface. This algorithm, implemented on a GCA-9300A SPECT system, shows good results with phantom and patient studies. The SPECT transaxial resolution is 4.6 mm FWHM (reconstructed image matrix size of 256*256) at the center of SPECT field of view using ultra-high-resolution fan beam collimators for brain study. Clinically, Tc-99m HMPAO and Tc-99m ECD brain data are reconstructed using this algorithm. The reconstruction results are compared with MRI images of the same slice position and show significant improvement over results obtained with standard reconstruction algorithms.
机译:准直仪的物理特性会导致分辨率随着距准直仪表面距离的增加而降低。对于扇形束单光子发射计算机断层扫描(SPECT)数据,导出了卷积反投影算法,而无需重新绑定到平行束几何中。投影被过滤,然后反投影到等腰三角形内的区域中,该等腰三角形的顶点是扇形束的焦点,其底是扇形束准直器的面,并且在圆心的外部,圆心位于焦点之间的中间旋转中心,其直径是焦点与旋转中心之间的距离。因此,反投影区域靠近准直仪表面。该算法在GCA-9300A SPECT系统上实施,在幻像和患者研究中显示出良好的效果。使用超高分辨率扇形光束准直仪进行SPECT视轴中心处SPECT视轴中心的分辨率为4.6 mm FWHM(重建的图像矩阵尺寸为256 * 256),用于大脑研究。临床上,使用此算法可重建Tc-99m HMPAO和Tc-99m ECD脑数据。将重建结果与相同切片位置的MRI图像进行比较,并显示出比标准重建算法获得的结果有显着改善。

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