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Parallel distributed and GPU computing technologies in single-particle electron microscopy

机译:单粒子电子显微镜中的并行分布式和GPU计算技术

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摘要

Most known methods for the determination of the structure of macromolecular complexes are limited or at least restricted at some point by their computational demands. Recent developments in information technology such as multicore, parallel and GPU processing can be used to overcome these limitations. In particular, graphics processing units (GPUs), which were originally developed for rendering real-time effects in computer games, are now ubiquitous and provide unprecedented computational power for scientific applications. Each parallel-processing paradigm alone can improve overall performance; the increased computational performance obtained by combining all paradigms, unleashing the full power of today’s technology, makes certain applications feasible that were previously virtually impossible. In this article, state-of-the-art paradigms are introduced, the tools and infrastructure needed to apply these paradigms are presented and a state-of-the-art infrastructure and solution strategy for moving scientific applications to the next generation of computer hardware is outlined.
机译:用于确定大分子复合物结构的最已知方法在某些时候受到其计算需求的限制或至少受到限制。诸如多核,并行和GPU处理等信息技术的最新发展可用于克服这些限制。特别是,最初为在计算机游戏中渲染实时效果而开发的图形处理单元(GPU)现在无处不在,并为科学应用提供了前所未有的计算能力。每个并行处理范例都可以提高整体性能。通过结合所有范式获得的更高的计算性能,释放了当今技术的全部力量,使得某些应用程序实际上是不可能实现的。在本文中,介绍了最新的范例,介绍了应用这些范例所需的工具和基础结构,以及用于将科学应用程序移植到下一代计算机硬件的最新基础结构和解决方案策略概述。

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