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Assessment of Geometric Distortion in Six Clinical Scanners Using a 3D-Printed Grid Phantom

机译:使用3D打印网格幻影评估六个临床扫描仪中的几何变形

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A cost-effective regularly structured three-dimensional (3D) printed grid phantom was developed to enable the quantification of machine-related magnetic resonance (MR) distortion. This phantom contains reference features, ?¢????point-like?¢???? objects, or vertices, which resulted from the intersection of mesh edges in 3D space. 3D distortions maps were computed by comparing the locations of corresponding features in both MR and computer tomography (CT) data sets using normalized cross correlation. Results are reported for six MRI scanners at both 1.5 T and 3.0 T field strengths within our institution. Mean Euclidean distance error for all MR volumes in this study, was less than 2 mm. The maximum detected error for the six scanners ranged from 2.4 mm to 6.9 mm. The conclusions in this study agree well with previous studies that indicated that MRI is quite accurate near the centre of the field but is more spatially inaccurate toward the edges of the magnetic field.
机译:开发了具有成本效益的规则结构三维(3D)打印网格幻像,以量化与机器相关的磁共振(MR)失真。此幻像包含参考特征,即点样?由3D空间中的网格边缘相交产生的对象或顶点。通过使用归一化互相关比较MR和计算机断层扫描(CT)数据集中相应特征的位置来计算3D失真图。我们机构中六台MRI扫描仪在1.5 T和3.0 T场强下均报告了结果。在本研究中,所有MR体积的平均欧氏距离误差均小于2 mm。六台扫描仪的最大检测误差范围为2.4毫米至6.9毫米。该研究的结论与以前的研究非常吻合,后者表明MRI在磁场中心附近非常准确,但在磁场边缘空间上更不准确。

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