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电子断层扫描的子采样和图像修复方法

Subsampling and inpainting approaches for electron tomography.

作者信息

Sanders Toby, Dwyer Christian

机构信息

School Of Mathematical and Statistical Sciences, Arizona State University, Tempe, Arizona 85287-1804, USA.

Department of Physics, Arizona State University, Tempe, Arizona 85287-1504, USA.

出版信息

Ultramicroscopy. 2017 Nov;182:292-302. doi: 10.1016/j.ultramic.2017.07.021. Epub 2017 Aug 3.

Abstract

With the aim of addressing the issue of sample damage during electron tomography data acquisition, we propose a number of new reconstruction strategies based on subsampling (which uses only a subset of a full image) and inpainting (recovery of a full image from subsampled one). We point out that the total-variation (TV) inpainting model commonly used to inpaint subsampled images may be inappropriate for 2D projection images of typical TEM specimens. Thus, we propose higher-order TV (HOTV) inpainting, which accommodates the fact that projection images may be inherently smooth, as a more suitable image inpainting scheme. We also describe how the HOTV method can be extended to 3D, a scheme which makes use of both image data and sinogram data. Additionally, we propose gradient subsampling as a more efficient scheme than random subsampling. We make a rigorous comparison of our proposed new reconstruction schemes with existing ones. The new schemes are demonstrated to perform better than or as well as existing schemes, and we show that they outperform existing schemes at low subsampling rates.

摘要

为了解决电子断层扫描数据采集过程中的样本损坏问题,我们提出了一些基于子采样(仅使用完整图像的一个子集)和图像修复(从子采样图像中恢复完整图像)的新重建策略。我们指出,通常用于修复子采样图像的全变差(TV)图像修复模型可能不适用于典型透射电子显微镜(TEM)标本的二维投影图像。因此,我们提出了高阶全变差(HOTV)图像修复方法,该方法考虑到投影图像可能本质上是平滑的这一事实,是一种更合适的图像修复方案。我们还描述了如何将HOTV方法扩展到三维,该方案同时利用了图像数据和正弦图数据。此外,我们提出梯度子采样作为一种比随机子采样更有效的方案。我们将我们提出的新重建方案与现有方案进行了严格比较。结果表明,新方案的性能优于或等同于现有方案,并且我们证明在低子采样率下它们优于现有方案。

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