Opt Lett. 2023 May 15;48(10):2535-2538. doi: 10.1364/OL.485929.
Structured illumination microscopy (SIM) allows non-invasive visualization of nanoscale subcellular structures. However, image acquisition and reconstruction become the bottleneck to further improve the imaging speed. Here, we propose a method to accelerate SIM imaging by combining the spatial re-modulation principle with Fourier domain filtering and using measured illumination patterns. This approach enables high-speed, high-quality imaging of dense subcellular structures using a conventional nine-frame SIM modality without phase estimation of the patterns. In addition, seven-frame SIM reconstruction and additional hardware acceleration further improve the imaging speed using our method. Furthermore, our method is also applicable to other spatially uncorrelated illumination patterns, such as distorted sinusoidal, multifocal, and speckle patterns.
结构光照明显微镜(SIM)允许非侵入式可视化纳米级亚细胞结构。然而,图像采集和重建成为进一步提高成像速度的瓶颈。在这里,我们提出了一种通过结合空间重调制原理和傅里叶域滤波并使用测量的照明模式来加速 SIM 成像的方法。该方法可以使用传统的九帧 SIM 模式实现高密度亚细胞结构的高速、高质量成像,而无需对模式进行相位估计。此外,使用我们的方法,七帧 SIM 重建和额外的硬件加速可以进一步提高成像速度。此外,我们的方法也适用于其他空间不相关的照明模式,如扭曲正弦、多焦点和散斑模式。