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):49-54. doi: 10.1364/josaa.18.000049.
We analyze the ability of nonlinear image restoration to remove interference artifacts in microscopes that enlarge the axial optical bandwidth through coherent counterpropagating waves. We calculate the images of an elaborate test object as produced by confocal, standing-wave, incoherent illumination interference image interference, and 4Pi confocal microscopes, and we subsequently investigate the extent to which the initial object can be restored by the information allowed by their optical transfer function. We find that nonlinear restoration is successful only if the transfer function is sufficiently contiguous and has amplitudes well above the noise level, as is mostly the case in a two-photon excitation 4Pi confocal microscope.
我们分析了非线性图像恢复技术在通过相干反向传播波扩展轴向光学带宽的显微镜中去除干扰伪像的能力。我们计算了共聚焦、驻波、非相干照明干涉图像干涉和4Pi共聚焦显微镜所产生的精细测试物体的图像,随后研究了初始物体能够通过其光学传递函数所允许的信息恢复的程度。我们发现,只有当传递函数足够连续且幅度远高于噪声水平时,非线性恢复才会成功,双光子激发4Pi共聚焦显微镜大多就是这种情况。