Ma Limei, Zhang Xiangzhi, Xu Zijian, Späth Andreas, Xing Zhenjiang, Sun Tianxiao, Tai Renzhong
Opt Express. 2019 Mar 4;27(5):7787-7802. doi: 10.1364/OE.27.007787.
Focal stack (FS) is an effective technique for fast 3D imaging in high-resolution scanning transmission X-ray microscopy. Its crucial issue is to assign each object within the sample to the correct position along the optical axis according to a proper focus measure. There is probably information loss with previous algorithms for FS reconstruction because the old algorithms can only detect one focused object along each optical-axial pixel line (OAPL). In this study, we present an improved FS algorithm, which utilizes an elaborately calculated threshold for normalized local variances to extract multiple focused objects in each OAPL. Simulation and experimental results show its feasibility and high efficiency for 3D imaging of high contrast, sparse samples. It is expected that our advanced approach has potential applications in 3D X-ray microscopy for more complex samples.
焦堆栈(FS)是高分辨率扫描透射X射线显微镜中用于快速三维成像的有效技术。其关键问题是根据适当的聚焦度量,将样品中的每个物体沿光轴分配到正确的位置。以前用于FS重建的算法可能存在信息丢失,因为旧算法只能沿每条光轴像素线(OAPL)检测到一个聚焦物体。在本研究中,我们提出了一种改进的FS算法,该算法利用精心计算的归一化局部方差阈值,在每条OAPL中提取多个聚焦物体。模拟和实验结果表明,该算法对于高对比度、稀疏样品的三维成像具有可行性和高效性。预计我们的先进方法在更复杂样品的三维X射线显微镜中具有潜在应用。