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New sampling scheme for region-of-interest tomography

机译:感兴趣区域层析成像的新采样方案

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摘要

The wavelet localization technique was previously applied to the study of region-of-interest (ROI) tomography. It achieves a significant saving in the required projections if only a small region of a tomographic image is of interest. In this paper, we first show that with the same sampling scheme, a simple interpolation applied to the samples can give a result at least as good as that using the original wavelet localization approach. It implies that the use of the wavelet transform is not the key to the reduction of the sampling requirement. In fact, the quality of the reconstructed ROI is largely determined by the structure of the sampling scheme. Rather than directly reducing the projection number, the use of the wavelet theory permits a clear understanding of how to achieve a good sampling pattern. Based on an error analysis using the wavelet theory, we further suggest a new sampling scheme such that the number of required projections in each angle is reduced in a multiresolution form. A new multiresolution interpolation algorithm is then used to interpolate the missing samples to obtain the full projections. As a result, more than 84% of projections are saved, as compared with the traditional approach, in reconstructing an ROI of 32/spl times/32 pixels in an image of 256/spl times/256 pixels. A series of simulations was performed to reconstruct different sizes of the ROI. All results show that the signal-to-error ratios of the reconstructed ROI are comparable with that using full projection data set.
机译:小波定位技术先前已应用于研究感兴趣区域(ROI)层析成像。如果仅对断层图像的一小部分区域感兴趣,则可以大大节省所需的投影。在本文中,我们首先表明,在相同的采样方案下,对样本进行简单插值可以得出的结果至少与使用原始小波定位方法得出的结果一样好。这意味着使用小波变换并不是减少采样需求的关键。实际上,重建的ROI的质量很大程度上取决于采样方案的结构。小波理论的使用而不是直接减少投影数,而是使您可以清楚地了解如何实现良好的采样模式。基于使用小波理论的误差分析,我们进一步提出了一种新的采样方案,即以多分辨率形式减少每个角度中所需投影的数量。然后使用新的多分辨率插值算法对丢失的样本进行插值以获得完整的投影。结果,与传统方法相比,在重建256 / spl次/ 256像素的图像中的ROI为32 / spl次/ 32像素时,节省了84%以上的投影。进行了一系列模拟以重建不同大小的ROI。所有结果表明,重建的ROI的信噪比与使用完整投影数据集的信噪比相当。

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