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A high-density 3D localization algorithm for stochastic optical reconstruction microscopy.一种用于随机光学重建显微镜的高密度三维定位算法。
Opt Nanoscopy. 2012;1(6). doi: 10.1186/2192-2853-1-6.
2
Video-rate nanoscopy using sCMOS camera-specific single-molecule localization algorithms.使用 sCMOS 相机特定的单分子定位算法实现视频速率纳米显微镜。
Nat Methods. 2013 Jul;10(7):653-8. doi: 10.1038/nmeth.2488. Epub 2013 May 26.
3
Limits of 3D dipole localization and orientation estimation for single-molecule imaging: towards Green's tensor engineering.单分子成像中三维偶极子定位与方向估计的局限性:迈向格林张量工程
Opt Express. 2012 Nov 19;20(24):26667-80. doi: 10.1364/OE.20.026667.
4
PALMER: a method capable of parallel localization of multiple emitters for high-density localization microscopy.帕尔默:一种能够对多个发射器进行并行定位以用于高密度定位显微镜的方法。
Opt Express. 2012 Jul 2;20(14):16039-49. doi: 10.1364/OE.20.016039.
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Faster STORM using compressed sensing.使用压缩感知技术的更快 STORM。
Nat Methods. 2012 Apr 22;9(7):721-3. doi: 10.1038/nmeth.1978.
6
Bayesian localization microscopy reveals nanoscale podosome dynamics.贝叶斯定位显微镜揭示纳米级足突动力学。
Nat Methods. 2011 Dec 4;9(2):195-200. doi: 10.1038/nmeth.1812.
7
Evaluation of fluorophores for optimal performance in localization-based super-resolution imaging.基于定位的超分辨率成像中荧光团最佳性能的评估。
Nat Methods. 2011 Nov 6;8(12):1027-36. doi: 10.1038/nmeth.1768.
8
High-density localization of active molecules using Structured Sparse Model and Bayesian Information Criterion.使用结构化稀疏模型和贝叶斯信息准则对活性分子进行高密度定位
Opt Express. 2011 Aug 29;19(18):16963-74. doi: 10.1364/OE.19.016963.
9
Simultaneous multiple-emitter fitting for single molecule super-resolution imaging.用于单分子超分辨率成像的同时多发射器拟合
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10
DAOSTORM: an algorithm for high- density super-resolution microscopy.DAOSTORM:一种用于高密度超分辨率显微镜的算法。
Nat Methods. 2011 Apr;8(4):279-80. doi: 10.1038/nmeth0411-279.

多发射器定位比较 3D 超分辨率成像模式。

A multiemitter localization comparison of 3D superresolution imaging modalities.

机构信息

Department of Physics and Astronomy, University of New Mexico, Albuquerque, NM 87131 (USA).

出版信息

Chemphyschem. 2014 Mar 17;15(4):696-704. doi: 10.1002/cphc.201300758. Epub 2013 Nov 26.

DOI:10.1002/cphc.201300758
PMID:24281982
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4186260/
Abstract

Single-molecule localization-based superresolution imaging is complicated by emission from multiple emitters overlapping at the detector. The potential for overlapping emitters is even greater for 3D imaging than for 2D imaging due to the large effective "volume" of the 3D point spread function. Overlapping emission can be accounted for in the estimation model, recovering the ability to localize the emitters, but with the caveat that the localization precision has a dependence on the amount of overlap from other emitters. Whether a particular 3D imaging modality has a significant advantage in facilitating the position estimation of overlapping emitters is investigated. The variants of two commonly used and easily implemented imaging modalities for 3D single-molecule imaging are compared: astigmatic imaging; dual focal plane imaging; and the combination of the two approaches, dual focal plane imaging with astigmatism. The Cramér-Rao lower bound is used to quantify the multiemitter estimation performance by calculating the theoretical best localization precision under a multiemitter estimation model. The performance of these 3D modalities is investigated under a wide range of conditions including various distributions of collected photons per emitter, background counts, pixel sizes, and camera readout noise values. Differences between modalities are small and it is therefore concluded that multiemitter fitting performance should not be a primary factor in selecting between these modalities.

摘要

基于单分子定位的超分辨率成像是复杂的,因为多个发射器在探测器处重叠。由于三维点扩散函数的有效“体积”较大,3D 成像比 2D 成像更容易出现重叠发射器的情况。在估计模型中可以考虑重叠发射,从而恢复对发射器进行定位的能力,但需要注意的是,定位精度与其他发射器的重叠量有关。研究了特定的 3D 成像方式是否在促进重叠发射器的位置估计方面具有显著优势。比较了两种常用于 3D 单分子成像的常用且易于实现的成像方式的变体:像散成像;双焦面成像;以及这两种方法的组合,带有像散的双焦面成像。使用克拉美罗下界通过在多发射器估计模型下计算理论上最佳定位精度来量化多发射器估计性能。在包括每个发射器的收集光子数、背景计数、像素大小和相机读出噪声值等各种分布在内的广泛条件下,研究了这些 3D 方式的性能。不同模式之间的差异很小,因此得出结论,多发射器拟合性能不应成为在这些模式之间进行选择的主要因素。