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Comparison of Spiral Computed Tomography versus Conventional Computed Tomography Multiplanar Reconstructions of a Fracture Displacement Phantom

机译:螺旋计算机断层扫描与传统计算机断层扫描多平面重建骨折位移模型的比较

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PURPOSE.The capabilities of spiral computed tomography (CT) versus conventional CT to represent minimal fracture displacements on multiplanar reconstruction images in a phantom model were evaluated.MATERIALS AND METHODS.A displacement phantom was created from Teflon and was scanned with conventional and spiral CT, at slice collimations of 2 mm, 3 mm, and 5 mm. Three Z-axis interpolation algorithms (360_LI, 180_LI and 180_HI) were employed to process the spiral image data into planar images. Displacements of 5 mm or less were represented in the phantom, and the resultant multiplanar reconstructions were analyzed for the precision of displacement representation. Specifically, the edge profiles of the reconstructed images were measured and compared.RESULTS.Spiral CT reconstruction edge profiles were similar to those of conventional CT when minimal table increments (3 mm/sec or less), and an advanced interpolation algorithm (180_LI) was employed. Images obtained with 360_LI interpolation manifested the effect of widened slice profile even when employing minimal table speeds.CONCLUSIONS.With minimal table increment (3 mm/sec or less) and a high-order interpolation algorithm (180_LI), spiral-CT-derived reconstructions demonstrate similar edge profile resolution to reconstructions obtained from conventional CT.
机译:目的。评估了螺旋计算机断层扫描 (CT) 与传统 CT 相比,在模型模型中的多平面重建图像上表示最小骨折位移的能力。材料和方法。用聚四氟乙烯制作了一个位移模型,并用常规和螺旋 CT 扫描,切片准直为 2 mm、3 mm 和 5 mm。采用3种Z轴插值算法(360_LI、180_LI和180_HI)将螺旋图像数据处理为平面图像。在模型中表示 5 mm 或更小的位移,并分析由此产生的多平面重建以了解位移表示的精度。具体而言,对重建图像的边缘轮廓进行了测量和比较。结果。螺旋CT重建的边缘轮廓与传统CT相似,当工作台增量最小(3 mm/sec或更小),并采用先进的插值算法(180_LI)时。使用360_LI插值获得的图像即使在使用最小的工作台速度时也表现出加宽切片轮廓的效果。结论。通过最小的工作台增量(3 mm/sec 或更短)和高阶插值算法 (180_LI),螺旋 CT 衍生的重建表现出与从传统 CT 获得的重建相似的边缘轮廓分辨率。

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