Institute of Biophysics Imaging and Optical Science, The University of Nottingham, University Park, Nottingham NG7 2RD, UK.
Opt Lett. 2011 Aug 1;36(15):2794-6. doi: 10.1364/OL.36.002794.
The use of aplanatic solid immersion lenses (ASILs) made of high-refractive-index optical materials provides a route to wide-field high-resolution optical microscopy. Structured illumination microscopy (SIM) can double the spatial bandwidth of a microscope to also achieve high-resolution imaging. We investigate the combination of ASILs and SIM in fluorescence microscopy, which we call structured illumination solid immersion fluorescence microscopy (SISIM), to pursue a microscopic system with very large NA and high lateral resolution. We demonstrate that the combination can produce a wide-field high-resolution microscopic system with bandwidth corresponding to an NA of 3. Future developments of the SISIM system to make it achieve even higher resolution are proposed.
使用高折射率光学材料制成的消像散固体浸没透镜 (ASIL) 为实现宽视场高分辨率光学显微镜提供了一种途径。结构光照明显微镜 (SIM) 可以将显微镜的空间带宽增加一倍,从而实现高分辨率成像。我们研究了 ASIL 和 SIM 在荧光显微镜中的结合,我们称之为结构光照明显射荧光显微镜 (SISIM),以追求具有非常大数值孔径和高横向分辨率的显微镜系统。我们证明,这种组合可以产生具有与 3 的数值孔径相对应的带宽的宽视场高分辨率显微镜系统。提出了进一步开发 SISIM 系统以实现更高分辨率的建议。