Liu Chao, Bai Chen, Yu Xianghua, Yan Shaohui, Zhou Yuan, Li Xing, Min Junwei, Yang Yanlong, Dan Dan, Yao Baoli
Opt Express. 2021 Feb 15;29(4):6158-6168. doi: 10.1364/OE.418707.
Light-sheet fluorescence microscopy (LSFM) facilitates high temporal-spatial resolution, low photobleaching and phototoxicity for long-term volumetric imaging. However, when a high axial resolution or optical sectioning capability is required, the field of view (FOV) is limited. Here, we propose to generate a large FOV of light-sheet by scanning multiple focus-shifted Gaussian beam arrays (MGBA) while keeping the high axial resolution. The positions of the beam waists of the multiple Gaussian beam arrays are shifted in both axial and lateral directions in an optimized arranged pattern, and then scanned along the direction perpendicular to the propagation axis to form an extended FOV of light-sheet. Complementary beam subtraction method is also adopted to further improve axial resolution. Compared with the single Gaussian light-sheet method, the proposed method extends the FOV from 12 μm to 200 μm while sustaining the axial resolution of 0.73 μm. Both numerical simulation and experiment on samples are performed to verify the effectiveness of the method.
光片荧光显微镜(LSFM)有助于实现高时空分辨率、低光漂白和光毒性,以进行长期的体积成像。然而,当需要高轴向分辨率或光学切片能力时,视野(FOV)会受到限制。在此,我们提出通过扫描多个焦点偏移的高斯光束阵列(MGBA)来生成大视野的光片,同时保持高轴向分辨率。多个高斯光束阵列的束腰位置在轴向和横向以优化的排列模式偏移,然后沿垂直于传播轴的方向扫描,以形成扩展的光片视野。还采用了互补光束减法方法来进一步提高轴向分辨率。与单高斯光片方法相比,该方法将视野从12μm扩展到200μm,同时保持0.73μm的轴向分辨率。进行了数值模拟和样品实验以验证该方法的有效性。