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Adaptive cubic interpolation of CT slices for maximum intensity projection

机译:CT切片的自适应三次插值以实现最大强度投影

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摘要

Three-dimensional visualization of medical images, using maximum intensity projection (MIP), requires isotropic volume data for the generation of realistic and undistorted 3-D views. However, the distance between CT slices is usually larger than the pixel spacing within each slice. Therefore, before the MIP operation, these axial slice images must be interpolated for the preparation of the isotropic data set. Of many available interpolation techniques, linear interpolation is most popularly used for such slice interpolation due to its computational simplicity. However, as resulting MIP's depend heavily upon the variance in interpolated slices (due to the inherent noise), MIP's of linearly interpolated slices suffer from horizontal streaking artifacts when the projection direction is parallel to the axial slice (e.g., sagittal and coronal views). In this paper, we propose an adaptive cubic interpolation technique to minimize these horizontal streaking artifacts in MIP's due to the variation of the variance across interpolated slices. The proposed technique, designed for near-constant variance distribution across interpolated slices, will be shown to be superior over the linear interpolation technique by completely eliminating the horizontal streaking artifacts in MIP's of simulated data set and real CT data set.
机译:使用最大强度投影(MIP)进行医学图像的三维可视化,需要各向同性的体积数据才能生成逼真的且不失真的3-D视图。但是,CT切片之间的距离通常大于每个切片内的像素间距。因此,在MIP操作之前,必须对这些轴向切片图像进行插值以准备各向同性数据集。在许多可用的插值技术中,线性插值由于其计算简单性而最普遍用于这种切片插值。但是,由于产生的MIP严重依赖于内插切片的变化(由于固有噪声),因此线性内插切片的MIP在投影方向平行于轴向切片时会产生水平条纹伪影(例如矢状和冠状视图)。在本文中,我们提出了一种自适应三次插值技术,以最小化由于插值切片之间方差变化而导致的MIP中的水平条纹伪影。通过完全消除模拟数据集和实际CT数据集的MIP中的水平条纹伪影,所提出的技术(专为跨插值切片的近恒定方差分布而设计)将显示出优于线性插值技术。

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