Hagen Nathan, Gao Liang, Tkaczyk Tomasz S
Department of Bioengineering, Rice University, Houston, Texas 77005, USA.
Opt Express. 2012 Jan 2;20(1):403-13. doi: 10.1364/OE.20.000403.
Structured illumination (SI) has long been regarded as a nonquantitative technique for obtaining sectioned microscopic images. Its lack of quantitative results has restricted the use of SI sectioning to qualitative imaging experiments, and has also limited researchers' ability to compare SI against competing sectioning methods such as confocal microscopy. We show how to modify the standard SI sectioning algorithm to make the technique quantitative, and provide formulas for calculating the noise in the sectioned images. The results indicate that, for an illumination source providing the same spatially-integrated photon flux at the object plane, and for the same effective slice thicknesses, SI sectioning can provide higher SNR images than confocal microscopy for an equivalent setup when the modulation contrast exceeds about 0.09.
结构照明(SI)长期以来一直被视为一种用于获取切片微观图像的非定量技术。其缺乏定量结果限制了SI切片在定性成像实验中的应用,也限制了研究人员将SI与诸如共聚焦显微镜等竞争切片方法进行比较的能力。我们展示了如何修改标准的SI切片算法以使该技术具有定量性,并提供了计算切片图像中噪声的公式。结果表明,对于在物平面提供相同空间积分光子通量的照明源,以及对于相同的有效切片厚度,当调制对比度超过约0.09时,在等效设置下,SI切片可以比共聚焦显微镜提供更高信噪比的图像。