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用于有限角度光学投影断层扫描的自监督下一个视图预测

Self-supervised next view prediction for limited-angle optical projection tomography.

作者信息

Zhang Hao, Liu BinBing, Fei Peng

机构信息

School of Optical and Electronic Information- Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

Biomed Opt Express. 2022 Oct 19;13(11):5952-5961. doi: 10.1364/BOE.472762. eCollection 2022 Nov 1.

Abstract

Optical projection tomography captures 2-D projections of rotating biological samples and computationally reconstructs 3-D structures from these projections, where hundreds of views with an angular range of π radian is desired for a reliable reconstruction. Limited-angle tomography tries to recover the structures of the sample using fewer angles of projections. However, the result is far from satisfactory due to the missing of wedge information. Here we introduce a novel view prediction technique, which is able to extending the angular range of captured views for the limited-angle tomography. Following a self-supervised technique that learns the relationship between the captured limited-angle views, unseen views can be computationally synthesized without any prior label data required. Combined with an optical tomography system, the proposed approach can robustly generate new projections of unknown biological samples and extends the angles of the projections from the original 60° to nearly 180°, thereby yielding high-quality 3-D reconstructions of samples even with highly incomplete measurement.

摘要

光学投影断层扫描可捕捉旋转生物样本的二维投影,并通过计算从这些投影重建三维结构,为实现可靠重建,需要在π弧度的角度范围内获取数百个视图。有限角度断层扫描试图使用较少的投影角度来恢复样本结构。然而,由于缺少楔形信息,结果远不能令人满意。在此,我们引入一种新颖的视图预测技术,该技术能够为有限角度断层扫描扩展捕获视图的角度范围。遵循一种自监督技术,该技术学习捕获的有限角度视图之间的关系,无需任何先验标签数据即可通过计算合成未见过的视图。与光学断层扫描系统相结合,所提出的方法能够稳健地生成未知生物样本的新投影,并将投影角度从原来的60°扩展到近180°,从而即使在测量高度不完整的情况下也能生成样本的高质量三维重建。

相似文献

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Limited-angle tomography for analyzer-based phase-contrast x-ray imaging.基于分析仪的相衬X射线成像的有限角度断层扫描
Phys Med Biol. 2014 Jul 7;59(13):3483-500. doi: 10.1088/0031-9155/59/13/3483. Epub 2014 Jun 5.

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