论文标题
用于常规,相对比和衍射断层扫描的快速统一重建算法
Fast unified reconstruction algorithm for conventional, phase-contrast and diffraction tomography
论文作者
论文摘要
描述了一种从多个照明方向收集的传输图像对物体进行三维重建的统一方法。该方法可能适用于使用X射线,电子和其他形式的穿透性辐射或物质波的实验条件,与基于吸收的,相对比或衍射成像有关。相位检索(也称为对比度传递函数校正)和Ewald球体曲率的影响(在具有较浅的景深和显着的对象衍射的情况下)都纳入了拟议的算法中,并且可以考虑在内。多个散射不是明确处理的,但由于构成该方法的基本特征的角平均值,可以缓解多个散射。相应的数值算法基于三维网格,该网格允许快速计算实现,包括直接并行化。该算法可与任何涉及平面波照明的扫描几何形状一起使用。已经开发了实施该算法的软件代码,对模拟和实验图像数据进行了测试,并公开可用。
A unified method for three-dimensional reconstruction of objects from transmission images collected at multiple illumination directions is described. The method may be applicable to experimental conditions relevant to absorption-based, phase-contrast or diffraction imaging using X-rays, electrons and other forms of penetrating radiation or matter waves. Both the phase retrieval (also known as contrast transfer function correction) and the effect of Ewald sphere curvature (in the cases with a shallow depth of field and significant in-object diffraction) are incorporated in the proposed algorithm and can be taken into account. Multiple scattering is not treated explicitly, but can be mitigated as a result of angular averaging that constitutes an essential feature of the method. The corresponding numerical algorithm is based on three-dimensional gridding which allows for fast computational implementation, including a straightforward parallelization. The algorithm can be used with any scanning geometry involving plane-wave illumination. A software code implementing the proposed algorithm has been developed, tested on simulated and experimental image data and made publicly available.