College of Optical Sciences, University of Arizona, Tucson, Arizona, 85721, USA.
School of Information Engineering, Wuhan University of Technology, Wuhan, Hubei, 430070, China.
Sci Rep. 2017 Oct 17;7(1):13349. doi: 10.1038/s41598-017-13778-2.
Confocal fluorescence microscopy is often used in brain imaging experiments, however conventional confocal microscopes are limited in their field of view, working distance, and speed for high resolution imaging. We report here the development of a novel high resolution, high speed, long working distance, and large field of view confocal fluorescence microscope (HL-CFM) with the capability of multi-region and multifocal imaging. To demonstrate the concept, a 0.5 numerical aperture (NA) confocal fluorescence microscope is prototyped with a 3 mm × 3 mm field of view and 12 mm working distance, an array of 9 beams is scanned over the field of view in 9 different regions to speed up the acquisition time by a factor of 9. We test this custom designed confocal fluorescence microscope for future use with brain clarification methods to image large volumes of the brain at subcellular resolution. This multi-region and multi-spot imaging method can be used in other imaging modalities, such as multiphoton microscopes, and the field of view can be extended well beyond 12 mm × 12 mm.
共聚焦荧光显微镜常用于脑成像实验,但传统共聚焦显微镜在视场、工作距离和高分辨率成像速度方面受到限制。我们在此报告一种新型高分辨率、高速、长工作距离、大视场共聚焦荧光显微镜 (HL-CFM) 的开发,该显微镜具有多区域和多焦点成像的能力。为了验证该概念,我们制作了一个 0.5 数值孔径 (NA) 的共聚焦荧光显微镜,视场为 3mm×3mm,工作距离为 12mm,9 个光束阵列在 9 个不同区域进行扫描,使采集速度提高了 9 倍。我们使用这种定制的共聚焦荧光显微镜来结合脑澄清方法,对亚细胞分辨率的大脑进行大容量成像。这种多区域和多点成像方法可用于其他成像模式,如多光子显微镜,并且视场可以扩展到远大于 12mm×12mm 的范围。