首页> 外文会议>Physic of Medical Imaging pt.2; Progress in Biomedical Optics and Imaging; vol.6 no.22 >Development of a new three-dimensional image reconstruction algorithm to reduce cone-beam artifacts
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Development of a new three-dimensional image reconstruction algorithm to reduce cone-beam artifacts

机译:减少锥束伪影的新型三维图像重建算法的开发

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We investigated an image reconstruction algorithm to reduce cone-beam artifacts in cone-beam CT. To examine the factors involved in the occurrence of cone-beam artifacts, micro-spheres phantom were arranged longitudinally at different positions and a computer simulation was performed. Due to differences in projection angle, data projected onto the detector surface were projected along trajectories shown as different periodic functions depending on the distance and position from the center of rotation. Therefore, projection along several detector channels based on different projection data resulting from different periodic functions is considered responsible for the increase in cone-beam artifacts associated with an increase in the distance of reconstruction planes from the center of rotation. Our new algorithm to reduce such artifacts features: 1) A change in weighting with respect to projection data obtained at different projection angles. 2) Distribution of correction coefficients so that they are larger near the center of the detector, while taking individual channel data for the detector into account, and smaller near the edges. 3) Three-dimensional back-projection of corrected projection data. The effect of the reduction in cone-beam artifacts of an object located at the edges markedly enhanced reconstruction planes at positions further from the center of rotation.
机译:我们研究了一种图像重建算法,以减少锥束CT中的锥束伪影。为了检查涉及锥束伪影发生的因素,将微球体模纵向排列在不同位置,并进行了计算机模拟。由于投影角度的差异,投影到检测器表面的数据会沿着显示为不同周期函数的轨迹进行投影,具体取决于距旋转中心的距离和位置。因此,基于由不同周期函数产生的不同投影数据的沿着几个检测器通道的投影被认为是与重建平面到旋转中心距离的增加相关的锥束伪影的增加的原因。我们减少此类伪像的新算法具有以下特点:1)在不同投影角度获得的投影数据的权重发生变化。 2)校正系数的分布,以使它们在检测器中心附近较大,同时考虑到检测器的各个通道数据,而在边缘附近较小。 3)校正投影数据的三维反向投影。位于边缘的物体的锥形束伪影的减少效果明显增强了离旋转中心更远位置的重建平面。

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