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Localized X-ray compressive computer tomography reconstruction by designing measurement matrix

机译:通过设计测量矩阵重建局部X射线压缩计算机X线断层扫描

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X-ray computed tomography (CT) is a noninvasive process for acquiring 3D images from the internal structure of an object. Traditionally, the number of samples needed to recover images from X-ray projections is due to the Nyquist criteria. Recently, a sampling protocol based on compressive sampling (CS) theory has been proposed for reducing the number of required samples. The compressive CT system measures coded projections by using coded apertures that can be adjusted to increase the quality of the retrieved information. In areas such as medicine, geology, and industry, there are applications where it is important the high resolution in only specific parts of the scene, and the additional information is ignored. The compressive CT system allows taking more compressive information of some part of the scene by designing the sensing matrix. This work formulates a localized reconstruction approach in compressive CT by downsampling the non-interest regions selectively and designing the coded apertures for ensuring a uniform sampling for the regions of interest. This process decreases the number of samples required to reconstruct all the data with a high resolution and to preserve a high quality only in the regions of interest. Simulation results, of real and synthetic data, show that the reconstruction algorithms based on CS theory allow the CT images reconstruction for selectively subsampled data and the regions of interest reconstructions have comparable quality to traditional results without selectivity.
机译:X射线计算机断层扫描(CT)是一种用于从对象内部结构获取3D图像的非侵入性过程。传统上,从X射线投影恢复图像所需的样本数量取决于奈奎斯特标准。近来,已经提出了基于压缩采样(CS)理论的采样协议以减少所需采样的数量。压缩CT系统通过使用编码孔径来测量编码投影,可以对编码孔径进行调整以提高检索信息的质量。在诸如医学,地质学和工业等领域中,仅在场景的特定部分具有高分辨率非常重要,而忽略了其他信息,在某些应用中,这一点很重要。通过设计传感矩阵,压缩CT系统可以获取场景某些部分的更多压缩信息。这项工作通过选择性地对非感兴趣区域进行下采样并设计编码孔径以确保对感兴趣区域进行均匀采样,从而制定了压缩CT的局部重建方法。此过程减少了以高分辨率重建所有数据并仅在感兴趣区域中保持高质量所需的样本数量。真实和合成数据的仿真结果表明,基于CS理论的重建算法允许针对选择性二次采样数据进行CT图像重建,并且感兴趣区域重建的质量与传统结果相当,没有选择性。

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