Nagorni M, Hell S W
High Resolution Optical Microscopy Group, Max-Planck-Institute for Biophysical Chemistry, Göttingen, Germany.
J Opt Soc Am A Opt Image Sci Vis. 2001 Jan;18(1):36-48. doi: 10.1364/josaa.18.000036.
We study the use of coherent counterpropagating interfering waves to increase threefold to sevenfold the optical bandwidth and the resolution of fluorescence microscopy along the optic axis. Systematic comparison of the point-spread function and the optical transfer function (OTF) for the standing-wave microscope (SWM), the incoherent illumination interference image interference microscope (I5M), and the 4Pi confocal microscope reveals essential differences among their resolution capabilities. It is shown that the OTF's of these microscopes differ strongly in contiguity and amplitude within the enlarged range of transferred frequencies, and therefore they also differ in their ability to provide data from which interference artifacts can be removed. We demonstrate that for practical aperture angles the production of an interference pattern is insufficient for improving the axial resolution by the expected factor of 3-7. Conditions of the OTF for unambiguous improvement of axial resolution of arbitrary objects are fulfilled not at all in the SWM, partially in the I5M, and fully in the two-photon 4Pi confocal microscope.
我们研究了使用相干反向传播干涉波,使沿光轴的荧光显微镜的光学带宽和分辨率提高三到七倍。对驻波显微镜(SWM)、非相干照明干涉图像干涉显微镜(I5M)和4Pi共聚焦显微镜的点扩散函数和光学传递函数(OTF)进行系统比较,揭示了它们分辨率能力的本质差异。结果表明,这些显微镜的OTF在转移频率的扩大范围内,在连续性和幅度上有很大差异,因此它们在提供可去除干涉伪影数据的能力上也有所不同。我们证明,对于实际孔径角,产生干涉图样不足以将轴向分辨率按预期的3至7倍提高。在SWM中完全不满足任意物体轴向分辨率明确提高的OTF条件,在I5M中部分满足,而在双光子4Pi共聚焦显微镜中完全满足。