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Reconstruction method for extended depth-of-field optical diffraction tomography

机译:扩展近场光学衍射断层扫描的重建方法

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In the paper we present a novel method of extended depth-of-field limited-angle optical diffraction tomography, in which the change of a focal plane position is performed with a liquid focus-tunable lens. One sinogram is acquired for each state of a focus-tunable lens. After acquisition process is complete, all sinograms are independently reconstructed and stitched to form the final tomographic reconstruction. The presented solution effectively extends the applicability of the Rytov approximation to relatively thick samples and provides uniform resolution of 3D tomographic reconstructions. The method is also combined with Generalized Total Variation Iterative Constraint algorithm, which minimizes distortion of the results due to the limited angular range of acquired projections. The combined solution is dedicated to investigation of transparent and semi-transparent biological micro-structures, like cells and tissue slices. (C) 2017 The Authors. Published by Elsevier Inc.
机译:在本文中,我们介绍了一种扩展较远的场景限明 - 角度光学衍射层析的新方法,其中利用液体聚焦可调透镜进行焦平面位置的变化。 针对焦点可调镜头的每个状态获取一个SINOGRAM。 在收集过程完成后,所有的铭文都被独立重建和缝合以形成最终断层摄影重建。 所提出的解决方案有效地扩展了Rytov近似对相对较厚的样品的适用性,并提供了3D断层重建的均匀分辨率。 该方法还与广义的总变化迭代约束算法组合,这使得由于所获取的投影的有限角度范围而最小化结果的失真。 组合的解决方案专用于调查透明和半透明的生物微结构,如细胞和组织切片。 (c)2017作者。 elsevier公司发布

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