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首页> 外文期刊>Journal of the Physical Society of Japan >Complex Observation in Electron Microscopy: III. Inverse Theory of Observation-Scheme Dependent Information Transfer
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Complex Observation in Electron Microscopy: III. Inverse Theory of Observation-Scheme Dependent Information Transfer

机译:电子显微镜的复杂观察:III。观测方案相关信息传递的逆理论

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摘要

A comparative approach to investigate what is renovated in transmission electron microscopy (TEM) with the recently proposed complex observation is reported. To make the comparison quantitative among various TEM schemes proposed to date, a novel TEM index, information transfer reliability (ITR), was introduced based on a linear inverse theory originally developed to characterize measurement models. ITRs regarding to four different observation schemes (two unreplaceable schemes: bright-field (conventional) and Zernike phase-contrast, and two derived schemes: defocus series based on conventional and complex obtained from a combination of conventional and Zernike phase-contrast) were calculated for the images respectively obtained with computer simulation for a protein, a high potential sulfur protein. Recognition of the 0.5 nm-diameter prosthetic group, an iron-sulfur cluster, included in the protein was used as a criterion for good-quality images. Based on the argument on the relation between the recognizability by our image perception and the TEM index ITR calculated for the same image, superiority in the observation scheme was quantitatively confirmed for the complex observation and its single experimental version, phase-contrast.
机译:报告了一种比较方法,用于研究透射电子显微镜(TEM)中最近提出的复杂观测所进行的改进。为了使迄今为止提出的各种TEM方案之间的比较量化,基于最初用于表征测量模型的线性逆理论,引入了一种新的TEM指标,即信息传递可靠性(ITR)。计算了与四种不同观察方案有关的ITR(两种不可替代方案:明场(常规)和Zernike相衬,两种派生方案:基于常规和复数的散焦序列,是从常规和Zernike相衬的组合中获得的)对于通过计算机模拟分别获得的蛋白质图像,该蛋白质是一种高潜力的硫蛋白。蛋白质中包含的直径为0.5 nm的假体组(铁硫簇)的识别被用作获得高质量图像的标准。基于关于我们的图像感知的可识别性与针对同一图像计算的TEM指数ITR之间关系的争论,定量地证实了复杂观测及其单一实验版本,相衬的观测方案的优越性。

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