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Image analysis and interactive visualization techniques for electron microscopy tomograms

机译:电子显微镜断层图像的图像分析和交互式可视化技术

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摘要

Images are an important data source in modern science and engineering. A continued challenge is to perform measurements on and extract useful information from the image data, i.e., to perform image analysis. Additionally, the image analysis results need to be visualized for best comprehension and to enable correct assessments. In this thesis, research is presented about digital image analysis and three-dimensional (3-D) visualization techniques for use with transmission electron microscopy (TEM) image data and in particular electron tomography, which provides 3-D reconstructions of the nano-structures.ududThe electron tomograms are difficult to interpret because of, e.g., low signal-to-noise ratio, artefacts that stem from sample preparation and insufficient reconstruction information. Analysis is often performed by visual inspection or by registration, i.e., fitting, of molecular models to the image data. Setting up a visualization can however be tedious, and there may be large intra- and inter-user variation in how visualization parameters are set. Therefore, one topic studied in this thesis concerns automatic setup of the transfer function used in direct volume rendering of these tomograms. Results indicate that histogram and gradient based measures are useful in producing automatic and coherent visualizations.ududFurthermore, research has been conducted concerning registration of templates built using molecular models. Explorative visualization techniques are presented that can provide means of visualizing and navigating model parameter spaces. This gives a new type of visualization feedback to the biologist interpretating the TEM data. The introduced probabilistic template has an improved coverage of the molecular flexibility, by incorporating several conformations into a static model. Evaluation by cross-validation shows that the probabilistic template gives a higher correlation response than using a Protein Databank (PDB) devised model. The software ProViz (for Protein Visualization) is also introduced, where selected developed techniques have been incorporated and are demonstrated in practice.
机译:图像是现代科学和工程学中的重要数据源。继续的挑战是对图像数据进行测量并从图像数据中提取有用的信息,即进行图像分析。此外,图像分析结果需要可视化以实现最佳理解并进行正确评估。在这篇论文中,提出了关于数字图像分析和三维(3-D)可视化技术的研究,这些技术可用于透射电子显微镜(TEM)图像数据,尤其是电子断层扫描,可提供纳米结构的3-D重建。电子断层图很难解释,因为例如信噪比低,样品制备产生的伪像以及重建信息不足。通常通过目视检查或通过将分子模型配准到图像数据来进行分析。但是,设置可视化可能很乏味,并且在设置可视化参数的方式上,用户内部和用户之间可能会有很大的差异。因此,本论文研究的一个主题涉及在这些层析X射线照片的直接体绘制中使用的传递函数的自动设置。结果表明,基于直方图和梯度的度量可用于生成自动且一致的可视化效果。 ud ud此外,已进行了有关使用分子模型构建的模板的配准的研究。提出了探索性的可视化技术,可以提供可视化和导航模型参数空间的方法。这为生物学家解释TEM数据提供了一种新型的可视化反馈。通过将几个构象合并到静态模型中,引入的概率模板具有更好的分子灵活性覆盖范围。通过交叉验证进行的评估表明,与使用蛋白质数据库(PDB)设计的模型相比,概率模板具有更高的相关性响应。还介绍了ProViz(用于蛋白质可视化)软件,其中已合并了选定的开发技术并在实践中进行了演示。

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    Svensson Lennart;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 sv
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