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用于相位物体的半扫描和单平面强度衍射层析成像

Half-scan and single-plane intensity diffraction tomography for phase objects.

作者信息

Shi Daxin, Anastasio Mark A, Huang Yin, Gbur Greg

机构信息

Department of Biomedical Engineering, Illinois Institute of Technology, Chicago, IL 60616, USA.

出版信息

Phys Med Biol. 2004 Jun 21;49(12):2733-52. doi: 10.1088/0031-9155/49/12/018.

Abstract

A reconstruction theory for intensity diffraction tomography (I-DT) has been proposed that permits reconstruction of a weakly scattering object without explicit knowledge of phase information. In this work, we examine the application of I-DT, using either planar- or spherical-wave incident wavefields, for imaging three-dimensional (3D) phase objects. We develop and investigate two algorithms for reconstructing phase objects that utilize only half of the measurements that would be needed to reconstruct a complex-valued object function. Each reconstruction algorithm reconstructs the phase object by use of different sets of intensity measurements. Although the developed reconstruction algorithms are equivalent mathematically, we demonstrate that their numerical and noise propagation properties differ considerably. We implement numerically the reconstruction algorithms and present reconstructed images to demonstrate their use and to corroborate our theoretical assertions.

摘要

已经提出了一种强度衍射层析成像(I-DT)的重建理论,该理论允许在无需明确相位信息的情况下重建弱散射物体。在这项工作中,我们研究了使用平面波或球面波入射波场的I-DT在三维(3D)相位物体成像中的应用。我们开发并研究了两种用于重建相位物体的算法,这些算法仅利用重建复值物体函数所需测量值的一半。每种重建算法通过使用不同的强度测量集来重建相位物体。尽管所开发的重建算法在数学上是等效的,但我们证明它们的数值特性和噪声传播特性有很大差异。我们对重建算法进行了数值实现,并展示了重建图像以证明其用途并证实我们的理论断言。

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