Because of the limited number of projections, the mathematic reconstruction formula of the filtered backprojection (FBP) algorithm may create an artifact that streaks reconstructed images. T'/> Streak Artifact Reduction in Filtered Backprojection Using a Level Line-Based Interpolation Method
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Streak Artifact Reduction in Filtered Backprojection Using a Level Line-Based Interpolation Method

机译:使用基于水平线的插值方法减少滤波反投影中的条纹伪影

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id="p-1">Because of the limited number of projections, the mathematic reconstruction formula of the filtered backprojection (FBP) algorithm may create an artifact that streaks reconstructed images. This artifact can be imperfectly removed by replacing the ramp filter of the FBP with an ad hoc low-pass filter, the cost being the loss of contrast and definition. In this study, a solution was proposed to increase, by computational means, the number of projections to reduce the artifact at a lower cost. The cost was a postacquisition process, which was reasonably time consuming. >Methods: The process was called interpolation of projections by contouring (IPC). First, level lines were plotted on the sinogram to delimit isocount regions; then, the regions containing the interpolated points were found, and to each point was assigned the intensity of its isocount region. Using this process, the data could be resampled, allowing an increase in the number of projections or the number of pixels by projections. A phantom study of bone scintigraphy was performed to compare the slices obtained with and without the IPC process with the true image. A clinical case was also presented. >Results: The phantom study showed that with the IPC process, the reconstructed slice was closer to the model, inside and outside the body, when the sinogram was resampled to multiply by 2 or 3 the number of projections, with the same number of pixels per projection. In the clinical study, the streak artifact was reduced, especially outside the body, although only a ramp filter was used. >Conclusion: The IPC process succeeded in reducing the streak artifact. This process did not require any modification in acquisition and was not operator dependent. The increase in the number of projections is likely a necessary but not a sufficient condition to reduce the streak artifact: if not corrected, the attenuation could be a limiting factor in the removal of this artifact when the number of projections increases.
机译:id =“ p-1”>由于有限数量的投影,滤波反投影(FBP)算法的数学重建公式可能会产生对重建图像产生条纹的伪像。通过用特设的低通滤波器替换FBP的斜坡滤波器,可以不完美地消除此伪影,代价是对比度和清晰度下降。在这项研究中,提出了一种解决方案,通过计算手段来增加投影数量,从而以较低的成本减少伪影。成本是收购后的过程,相当耗时。 >方法:该过程称为通过轮廓插值投影(IPC)。首先,在正弦图上绘制水平线以划定等值线区域。然后,找到包含插值点的区域,并为每个点分配其等计数区域的强度。使用此过程,可以对数据进行重新采样,从而可以增加投影数量或每个投影像素的数量。进行了骨闪烁显像的幻像研究,以比较使用和不使用IPC过程获得的切片与真实图像。还提出了一个临床病例。 >结果:幻像研究表明,通过IPC过程,当对正弦图进行重新采样以将投影数量乘以2或3时,重建的切片在体内和体外都更接近模型。每个投影的像素数相同。在临床研究中,减少了条纹伪影,尤其是在身体外部,尽管仅使用了斜坡滤波器。 >结论:IPC流程成功减少了条纹痕迹。此过程不需要任何修改,也不依赖于操作员。凸起数量的增加可能是减少条纹伪影的必要条件,但不是充分条件:如果不进行校正,则当凸起数量增加时,衰减可能是去除该伪影的限制因素。

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