Schreiber Benjamin, Elsayad Kareem, Heinze Katrin G
Opt Lett. 2017 Oct 1;42(19):3880-3883. doi: 10.1364/OL.42.003880.
Total internal reflection fluorescence microscopy (TIRF-M) provides low-invasive high-contrast surface imaging with optical sectioning of typically 100-200 nm. Thus, TIRF-M has become an established tool for imaging surfaces, including cell membranes. For TIRF-M, a homogenous evanescent field of excitation over the whole field of view is generally desired for quantitative microscopy; however, this is not necessarily straightforward to generate with Gaussian beams. In recent years, several improvements on TIRF-M have been developed that have addressed non-uniform scattering fringes and other artifacts. Here, we introduce a cost-effective TIRF setup with a very low degree of complexity and no moving parts, which provides a flattop-like excitation profile. The setup uses a tunable laser ring zoom focus system to generate a full 360° TIRF illumination. Two axicon lenses and one focus lens allow for generation and control of the ring diameter to tune the TIRF excitation angle. We show that 360° laser illumination in combination with a radial polarizer will generate an evanescent Bessel-beam excitation field that exhibits a flattop intensity over an extended part of the field of view, and demonstrate the advantages of this axicon-based Bessel beam illumination for live-cell imaging.
全内反射荧光显微镜(TIRF-M)提供低侵入性的高对比度表面成像,其光学切片厚度通常为100 - 200纳米。因此,TIRF-M已成为用于成像包括细胞膜在内的表面的成熟工具。对于TIRF-M,定量显微镜通常需要在整个视场中产生均匀的激发倏逝场;然而,用高斯光束产生这种场并非一定简单直接。近年来,已开发出对TIRF-M的多项改进,解决了非均匀散射条纹和其他伪影问题。在此,我们介绍一种成本效益高的TIRF装置,其复杂度极低且无移动部件,可提供类似平顶的激发轮廓。该装置使用可调谐激光环形变焦聚焦系统来产生360°全内反射荧光照明。两个轴棱锥透镜和一个聚焦透镜可生成并控制环形直径,以调整全内反射荧光激发角度。我们表明,360°激光照明与径向偏振器相结合将产生一个倏逝贝塞尔光束激发场,该场在视场的扩展部分呈现平顶强度,并展示了这种基于轴棱锥的贝塞尔光束照明用于活细胞成像的优势。