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针状生物样本的压缩感知电子断层扫描——降低剂量提高重建保真度的潜力

Compressed sensing electron tomography of needle-shaped biological specimens--Potential for improved reconstruction fidelity with reduced dose.

作者信息

Saghi Zineb, Divitini Giorgio, Winter Benjamin, Leary Rowan, Spiecker Erdmann, Ducati Caterina, Midgley Paul A

机构信息

Department of Materials Science and Metallurgy, University of Cambridge, 27 Charles Babbage Road, Cambridge CB3 0FS, UK.

Department of Materials Science and Metallurgy, University of Cambridge, 27 Charles Babbage Road, Cambridge CB3 0FS, UK.

出版信息

Ultramicroscopy. 2016 Jan;160:230-238. doi: 10.1016/j.ultramic.2015.10.021. Epub 2015 Oct 30.

Abstract

Electron tomography is an invaluable method for 3D cellular imaging. The technique is, however, limited by the specimen geometry, with a loss of resolution due to a restricted tilt range, an increase in specimen thickness with tilt, and a resultant need for subjective and time-consuming manual segmentation. Here we show that 3D reconstructions of needle-shaped biological samples exhibit isotropic resolution, facilitating improved automated segmentation and feature detection. By using scanning transmission electron tomography, with small probe convergence angles, high spatial resolution is maintained over large depths of field and across the tilt range. Moreover, the application of compressed sensing methods to the needle data demonstrates how high fidelity reconstructions may be achieved with far fewer images (and thus greatly reduced dose) than needed by conventional methods. These findings open the door to high fidelity electron tomography over critically relevant length-scales, filling an important gap between existing 3D cellular imaging techniques.

摘要

电子断层扫描是一种用于三维细胞成像的重要方法。然而,该技术受样本几何形状的限制,由于倾斜范围受限导致分辨率降低,倾斜时样本厚度增加,以及由此产生的主观且耗时的手动分割需求。在此我们表明,针状生物样本的三维重建具有各向同性分辨率,有助于改进自动分割和特征检测。通过使用扫描透射电子断层扫描,采用小探针会聚角,在大景深和整个倾斜范围内都能保持高空间分辨率。此外,将压缩传感方法应用于针状数据表明,与传统方法相比,只需少得多的图像(从而大大降低剂量)就能实现高保真重建。这些发现为在关键相关长度尺度上进行高保真电子断层扫描打开了大门,填补了现有三维细胞成像技术之间的重要空白。

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