Tu Shijie, Liu Qiulan, Liu Xin, Liu Wenjie, Zhang Zhimin, Luo Taojin, Kuang Cuifang, Liu Xu, Hao Xiang
Opt Lett. 2020 Mar 15;45(6):1567-1570. doi: 10.1364/OL.387888.
Structured illumination microscopy (SIM) is a powerful technique for providing super-resolution imaging, but its reconstruction algorithm, i.e., linear reconstruction structured illumination microscopy (LRSIM) algorithm in the Fourier domain, limits the imaging speed due to its computational effort. Here, we present a novel reconstruction algorithm that can directly process SIM data in the spatial domain. Compared to LRSIM, this approach uses the same number of frames to achieve a comparable resolution but with a much faster processing speed. Our algorithm was verified on both simulated and experimental data using sinusoidal pattern illumination. Moreover, this algorithm is also applicable for speckle pattern illumination.
结构光照明显微镜(SIM)是一种用于提供超分辨率成像的强大技术,但其重建算法,即在傅里叶域中的线性重建结构光照明显微镜(LRSIM)算法,由于其计算量而限制了成像速度。在此,我们提出了一种新颖的重建算法,该算法可以直接在空间域中处理SIM数据。与LRSIM相比,这种方法使用相同数量的帧来实现可比的分辨率,但处理速度要快得多。我们的算法在使用正弦图案照明的模拟数据和实验数据上均得到了验证。此外,该算法也适用于散斑图案照明。