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Compensating the intensity fall-off effect in cone-beam tomography by an empirical weight formula

机译:通过经验权重公式补偿锥形束层析成像中的强度下降效应

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The Feldkamp-David-Kress (FDK) algorithm is widely adopted for cone-beam reconstruction due to its one-dimensional filtered backprojection structure and parallel implementation. In a reconstruction volume, the conspicuous cone-beam artifact manifests as intensity fall-off along the longitudinal direction (the gantry rotation axis). This effect is inherent to circular cone-beam tomography due to the fact that a cone-beam dataset acquired from circular scanning fails to meet the data sufficiency condition for volume reconstruction. Upon observations of the intensity fall-off phenomenon associated with the FDK reconstruction of a ball phantom, we propose an empirical weight formula to compensate for the fall-off degradation. Specifically, a reciprocal cosine can be used to compensate the voxel values along longitudinal direction during three-dimensional backprojection reconstruction, in particular for boosting the values of voxels at positions with large cone angles. The intensity degradation within the z plane, albeit insignificant, can also be compensated by using the same weight formula through a parameter for radial distance dependence. Computer simulations and phantom experiments are presented to demonstrate the compensation effectiveness of the fall-off effect inherent in circular cone-beam tomography.
机译:Feldkamp-David-Kress(FDK)算法因其一维滤波反投影结构和并行实现而被广泛用于锥束重建。在重建体积中,明显的锥束伪像表现为沿纵向(机架旋转轴)的强度下降。由于从圆形扫描获取的锥束数据集无法满足体积重建的数据充足条件,因此这种效果是锥束层析成像固有的。在观察到与球体模型的FDK重建相关的强度下降现象后,我们提出了经验权重公式来补偿下降现象。具体地,可逆余弦可用于在三维反投影重建过程中沿纵向补偿体素值,特别是在具有大锥角的位置上提高体素值。 z平面内的强度下降虽然不明显,但也可以通过使用相同的权重公式通过径向距离相关性的参数来补偿。提出了计算机仿真和幻像实验,以证明锥束层析成像固有的衰减效应的补偿效果。

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