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首页> 外文期刊>Medical Physics >Favorable noise uniformity properties of Fourier-based interpolation and reconstruction approaches in single-slice helical computed tomography.
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Favorable noise uniformity properties of Fourier-based interpolation and reconstruction approaches in single-slice helical computed tomography.

机译:单层螺旋计算机层析成像中基于傅里叶插值和重构方法的良好噪声均匀性。

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摘要

Volumes reconstructed by standard methods from single-slice helical computed tomography (CT) data have been shown to have noise levels that are highly nonuniform relative to those in conventional CT. These noise nonuniformities can affect low-contrast object detectability and have also been identified as the cause of the zebra artifacts that plague maximum intensity projection (MIP) images of such volumes. While these spatially variant noise levels have their root in the peculiarities of the helical scan geometry, there is also a strong dependence on the interpolation and reconstruction algorithms employed. In this paper, we seek to develop image reconstruction strategies that eliminate or reduce, at its source, the nonuniformity of noise levels in helical CT relative to that in conventional CT. We pursue two approaches, independently and in concert. We argue, and verify, that Fourier-based longitudinal interpolation approaches lead to more uniform noise ratios than do the standard 360LI and 180LI approaches. We also demonstrate that a Fourier-based fan-to-parallel rebinning algorithm, used as an alternative to fanbeam filtered backprojection for slice reconstruction, also leads to more uniform noise ratios, even when making use of the 180LI and 360LI interpolation approaches.
机译:通过标准方法从单层螺旋计算机断层扫描(CT)数据重建的体积已显示出相对于常规CT而言具有非常不均匀的噪声水平。这些噪声不均匀会影响低对比度对象的可检测性,并且也被确定为斑马伪影的原因,这些斑马伪影困扰着此类体积的最大强度投影(MIP)图像。尽管这些空间变化的噪声水平源于螺旋扫描几何形状的特殊性,但也强烈依赖于所采用的插值和重构算法。在本文中,我们寻求开发一种图像重建策略,以从源头上消除或减少螺旋CT相对于传统CT的噪声水平的不均匀性。我们追求两种方法,独立地和协同地。我们争论并验证,基于傅立叶的纵向插值方法比标准360LI和180LI方法产生的噪声比更均匀。我们还演示了基于傅立叶的扇形并行重新组合算法,甚至可以在使用180LI和360LI插值方法的情况下,替代扇形束滤波反投影进行切片重建,从而产生更均匀的噪声比。

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