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Influence of Data Completion on Scatter Artifact Correction for Truncated Cone-Beam CT Data

机译:数据完成对截断锥形光束CT数据的散射伪影校正的影响

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X-ray scatter leads to one of the major artifacts limiting the image quality in cone-beam CT (CBCT). Hence the interest to perform an accurate scatter correction is very high. A particularly large amount of scatter is created in CBCT, due to the large cone-angle and the small distance between the rotation axis and the detector. Even if an anti-scatter grid is used, a scatter correction is necessary. The performance of an accurate scatter correction is difficult, especially when the data are additionally truncated due to a small field of measurement (FOM) (e.g. dental CT systems or C-Arm CT systems). In addition to the image degradation due to scatter artifacts, numerous CBCT artifacts like beam-hardening artifacts and cone-beam artifacts contribute to a further reduction in image quality. In this paper different detruncation methods are compared with respect to scatter to find a quantitative scatter correction approach for truncated CBCT data. The evaluation shows that a precise detruncation is crucial for an appropriate scatter correction. Additionally, the general image quality limit is enhanced by performing further artifact correction methods to reconstruct a nearly artifact-free CBCT volume.
机译:X射线散射导致限制锥梁CT(CBCT)中的图像质量的主要伪影之一。因此,执行精确的散射校正的兴趣非常高。由于圆锥角大,旋转轴和检测器之间的小距离,在CBCT中产生特别大量的散射。即使使用防散栅格,也是必要的散射校正。精确的散射校正的性能是困难的,尤其是当数据由于较小的测量场(FOM)(例如牙科CT系统或C臂CT系统)而被截断时。除了由于散射伪影引起的图像劣化之外,许多CBCT伪像与光束硬化伪像和锥形束伪像有助于进一步降低图像质量。在本文中,将不同的指示方法与散射进行比较,以找到截断CBCT数据的定量散射校正方法。评估表明,精确的指示对于适当的散射校正至关重要。另外,通过执行进一步的工件校正方法来增强一般图像质量限制以重建几乎伪造的CBCT卷。

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