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Resolution and Noise Trade-off Analysis for Volumetric CT

机译:体积CT的分辨率和噪声权衡分析

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In this study, we investigate the relationship between quantum noise and spatial resolution for volumetric CT. Both theoretical analysis and experiments were performed to investigate their relationship. In theory, quantum noise can be derived from its relationship to dose, in-plane spatial resolution, recon kernel, and signal-to-noise ratio (SNR). In the experiments, by scanning a Teflon sphere phantom, the 3-D MTF was measured from the edge profile along the spherical surface. Cases of different resolutions (and noise levels) were generated by adjusting recon kernel. To reduce bias, the total photon fluxes were matched: 120kVp, 260mA, and lsec per gantry rotation. In the end, all data sets were reconstructed using modified FDK algorithm under the same condition: FOV = 10cm and slice thickness = 0.625mm. Finally, we investigated the efficiency of an image-space adaptive smoothing filter as a noise reduction tool and its impact on spatial resolution. The theoretical analysis indicated that the variance of noise is proportional to at least 4th power of the spatial resolution. Our experimental results supported this conclusion by showing the relationship is 4.6th (helical) or 5th (axial) power. Results also showed that, with properly designed image-space smoothing filters, it is feasible to reduce quantum noise (and the power relationship to a lower order) with smaller loss of spatial resolution.
机译:在这项研究中,我们研究体积CT的量子噪声与空间分辨率之间的关系。进行理论分析和实验以研究它们之间的关系。从理论上讲,量子噪声可以从其与剂量,平面内空间分辨率,侦察内核和信噪比(SNR)的关系中得出。在实验中,通过扫描铁氟龙球体模,从沿球形表面的边缘轮廓测量了3-D MTF。通过调整侦察内核生成了不同分辨率(和噪声水平)的情况。为了降低偏置,总的光子通量要匹配:每个机架旋转120kVp,260mA和1sec。最后,使用改良的FDK算法在相同条件下重建所有数据集:FOV = 10cm,切片厚度= 0.625mm。最后,我们研究了图像空间自适应平滑滤波器作为降噪工具的效率及其对空间分辨率的影响。理论分析表明,噪声的方差至少与空间分辨率的四次方成正比。我们的实验结果表明该关系是4.6次(螺旋)或5次(轴向)功率,从而支持了这一结论。结果还表明,通过适当设计的像空间平滑滤波器,可以减少空间分辨率损失较小的量子噪声(并将功率关系降低至较低阶)。

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