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Bridging computer science and bioengineering for the multiscale modeling of biological systems

机译:桥接计算机科学与生物工程为生物系统多尺度建模

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摘要

Computer science and biology have come together significantly in recent years. This trend dates back to the 1960s, with the publication of the first protein sequences, the subsequent application of information theory the first alignment algorithms in the 1970s and 1980s that culminated with its improvement and implementation in the 1990s with software such as BLAST, which became one of the most cited articles in the history of science. Already in this millennium there has been a rapid growth of large-scale sequencing projects (e.g. the Human Genome Project), as well as the widespread expansion of omics databases, e.g. with genomic, transcriptomic and metabolic information. This explosion is transforming medicine and the life sciences, whose progress is increasingly associated with a strong integration with Computer Science and Engineering, which are likely to represent, in the 21st century, a similar role to that of Mathematics in Physics of the 20th century. This talk will overview some of the progress at the interface highlighting some of the associated challenges.
机译:近年来,计算机科学与生物学显着融为一体。这一趋势日期回到20世纪60年代,随后发表了第一蛋白序列,随后的信息理论在20世纪70年代和20世纪80年代的第一个对准算法,这些算法在20世纪90年代的改进和实施方面,爆炸等软件变得如此 - 变得如此科学史上最引用的文章之一。已经在这个千年里,大规模测序项目的快速增长(例如人类基因组项目),以及OMICS数据库的广泛扩展,例如,具有基因组,转录组和代谢信息。这种爆炸正在改变医学和生命科学,其进展越来越多地与计算机科学和工程的强烈融合相关,这可能在21世纪代表20世纪物理学中的数学的类似作用。这次谈话将概述界面突出了一些相关挑战的界面的一些进展。

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