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Error analysis in the determination of the electron microscopical contrast transfer function parameters from experimental power Spectra

机译:从实验功率谱确定电子显微对比度传递函数参数时的误差分析

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Background The transmission electron microscope is used to acquire structural information of macromolecular complexes. However, as any other imaging device, it introduces optical aberrations that must be corrected if high-resolution structural information is to be obtained. The set of all aberrations are usually modeled in Fourier space by the so-called Contrast Transfer Function (CTF). Before correcting for the CTF, we must first estimate it from the electron micrographs. This is usually done by estimating a number of parameters specifying a theoretical model of the CTF. This estimation is performed by minimizing some error measure between the theoretical Power Spectrum Density (PSD) and the experimentally observed PSD. The high noise present in the micrographs, the possible local minima of the error function for estimating the CTF parameters, and the cross-talking between CTF parameters may cause errors in the estimated CTF parameters. Results In this paper, we explore the effect of these estimation errors on the theoretical CTF. For the CTF model proposed in [ 1 ] we show which are the most sensitive CTF parameters as well as the most sensitive background parameters. Moreover, we provide a methodology to reveal the internal structure of the CTF model (which parameters influence in which parameters) and to estimate the accuracy of each model parameter. Finally, we explore the effect of the variability in the detection of the CTF for CTF phase and amplitude correction. Conclusion We show that the estimation errors for the CTF detection methodology proposed in [ 1 ] does not show a significant deterioration of the CTF correction capabilities of subsequent algorithms. All together, the methodology described in this paper constitutes a powerful tool for the quantitative analysis of CTF models that can be applied to other models different from the one analyzed here.
机译:背景技术透射电子显微镜用于获取高分子复合物的结构信息。但是,与任何其他成像设备一样,它引入了光学像差,如果要获得高分辨率的结构信息,则必须校正这些像差。通常,所有像差的集合都在傅里叶空间中通过所谓的对比度传递函数(CTF)进行建模。在校正CTF之前,我们必须首先从电子显微照片进行估算。这通常是通过估计指定CTF理论模型的许多参数来完成的。通过最小化理论功率谱密度(PSD)与实验观察到的PSD之间的一些误差度量来执行此估计。显微照片中存在的高噪声,用于估计CTF参数的误差函数的可能的局部最小值以及CTF参数之间的串扰可能会导致估计的CTF参数出现误差。结果在本文中,我们探索了这些估计误差对理论CTF的影响。对于[1]中提出的CTF模型,我们显示了哪些是最敏感的CTF参数以及最敏感的背景参数。此外,我们提供了一种方法来揭示CTF模型的内部结构(哪些参数影响哪些参数)并估算每个模型参数的准确性。最后,我们探讨了可变性在CTF相位和幅度校正的CTF检测中的影响。结论我们表明,[1]中提出的CTF检测方法的估计误差并未显示后续算法的CTF校正能力的显着降低。综上所述,本文描述的方法构成了用于CTF模型定量分析的强大工具,该工具可以应用于不同于此处分析的其他模型。

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