Opt Express. 2022 Feb 28;30(5):7938-7953. doi: 10.1364/OE.451190.
Three-dimensional structured illumination microscopy (3D-SIM) plays an essential role in biological volumetric imaging with the capabilities of improving lateral and axial resolution. However, the traditional linear 3D algorithm is sensitive to noise and generates artifacts, while the low temporal resolution hinders live-cell imaging. In this paper, we propose a novel 3D-SIM algorithm based on total variation (TV) and fast iterative shrinkage threshold algorithm (FISTA), termed TV-FISTA-SIM. Compared to conventional algorithms, TV-FISTA-SIM achieves higher reconstruction fidelity with the least artifacts, even when the signal-to-noise ratio (SNR) is as low as 5 dB, and a faster reconstruction rate. Through simulation, we have verified that TV-FISTA-SIM can effectively reduce the amount of required data with less deterioration. Moreover, we demonstrate TV-FISTA-SIM for high-quality multi-color 3D super-resolution imaging, which can be potentially applied to live-cell imaging applications.
三维结构光照明显微镜(3D-SIM)在具有提高横向和轴向分辨率的能力的生物体积成像中起着至关重要的作用。然而,传统的线性 3D 算法对噪声敏感,并产生伪影,而低时间分辨率则阻碍了活细胞成像。在本文中,我们提出了一种基于全变差(TV)和快速迭代收缩阈值算法(FISTA)的新型 3D-SIM 算法,称为 TV-FISTA-SIM。与传统算法相比,即使信噪比(SNR)低至 5dB,TV-FISTA-SIM 也能以最少的伪影实现更高的重建保真度,并且具有更快的重建速度。通过仿真,我们已经验证了 TV-FISTA-SIM 可以有效地减少所需数据量,而不会造成太大的恶化。此外,我们还展示了 TV-FISTA-SIM 用于高质量多色 3D 超分辨率成像,这可能适用于活细胞成像应用。