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Point-spread sensitivity analysis for 3-D flourescence microscopy

机译:3D荧光显微镜的点扩展敏感性分析

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Previous empirical results suggest that the use of an experimentally determined point-spread function (PSF) instead of a theoretical one improves reconstructions of three-dimensional (3-D) microscopic objects from optical sections. The microscope's PSF is usually measured by imaging a small fluorescent bead. There is a tradeoff in this measurement: very small beads are dim and bleach rapidly, while larger beads are a poorer approximation to a point source. We have simulated the effect of the bead on the shape of the PSF by convolving a theoretically determined PSF (of a 40 $MUL 1.0 N.A. oil-immersion lens) with spheres of varying diameters. Simulated data were generated with a 3-D phantom and the theoretical PSF, which is defined to be the `true' PSF for the simulation. Reconstructions of the phantom were obtained with each of the theoretical PSFs obtained from the beads using a regularized linear least-squares method. Results show a significant drop (more than 50%) in the signal-to-noise ratio of the reconstructions for beads with diameter larger than 0.22 $mu@m. These results suggest that the bead used in the PSF measurement should have a diameter less than 30% of the diameter of the first dark ring of the infocus two-dimensional (2-D) PSF. This study quantifies the tradeoff between the quality of the reconstructions and the bead size used in the PSF measurement.
机译:以前的经验结果表明,使用实验确定的点扩展功能(PSF)而不是理论上的用途改善了来自光学部分的三维(3-D)微观物体的重建。显微镜的PSF通常通过成像小荧光珠来测量。在该测量中有一个权衡:非常小的珠子暗淡,漂亮漂亮,而较大的珠子对点源较差。我们通过将理论上确定的PSF(40美元的MUL 1.0 N.A..油浸透镜)与不同的直径的球体卷积,模拟了珠子对PSF形状的影响。使用3-D幻像和理论PSF生成模拟数据,该PSF被定义为用于模拟的“真实”PSF。使用正则线性最小二乘法从珠子获得的每个理论PSF获得体模的重建。结果在具有直径大于0.22 $ MU @ m的珠子的重建的信号 - 噪声比中显示出显着的下降(超过50%)。这些结果表明,PSF测量中使用的珠子的直径应具有小于Infocus二维(2-D)PSF的第一暗环的直径的30%。本研究量化了重建质量与PSF测量中使用的珠粒尺寸之间的权衡。

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