Institute of Medical Device and Imaging, National Taiwan University, Taipei 10051, Taiwan.
YongLin Institute of Health, National Taiwan University, Taipei 10672, Taiwan.
Nano Lett. 2021 Jun 23;21(12):5133-5142. doi: 10.1021/acs.nanolett.1c01114. Epub 2021 Jun 7.
Fluorescence microscopy with optical sectioning capabilities is extensively utilized in biological research to obtain three-dimensional structural images of volumetric samples. Tunable lenses have been applied in microscopy for axial scanning to acquire multiplane images. However, images acquired by conventional tunable lenses suffer from spherical aberration and distortions. Here, we design, fabricate, and implement a dielectric Moiré metalens for fluorescence imaging. The Moiré metalens consists of two complementary phase metasurfaces, with variable focal length, ranging from ∼10 to ∼125 mm at 532 nm by tuning mutual angles. In addition, a telecentric configuration using the Moiré metalens is designed for high-contrast multiplane fluorescence imaging. The performance of our system is evaluated by optically sectioned images obtained from HiLo illumination of fluorescently labeled beads, as well as ex vivo mice intestine tissue samples. The compact design of the varifocal metalens may find important applications in fluorescence microscopy and endoscopy for clinical purposes.
荧光显微镜具有光学切片功能,广泛应用于生物研究中,以获取体积样本的三维结构图像。可调透镜已应用于显微镜轴向扫描以获取多平面图像。然而,传统的可调透镜获取的图像存在球差和失真。在这里,我们设计、制造和实现了用于荧光成像的介电莫尔超透镜。莫尔超透镜由两个互补的相位超表面组成,通过调节相互角度,在 532nm 波长下焦距可在 ∼10 到 ∼125mm 之间变化。此外,还设计了使用莫尔超透镜的远心配置,用于高对比度的多平面荧光成像。我们的系统性能通过对荧光标记珠的 HiLo 照明获得的光学切片图像以及离体小鼠肠组织样本进行评估。可变焦金属透镜的紧凑设计可能在临床荧光显微镜和内窥镜检查中具有重要应用。