近似回文检测的体系结构模型

Tomáš Martínek, Jan Vozenilek, M. Lexa
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引用次数: 2

摘要

了解DNA序列的结构和功能是现代生物学研究的一个重要领域。DNA中一个有趣的结构是回文。生物学家认为,回文在基因活动和其他细胞过程的调控中起着重要作用,因为它们经常在启动子、内含子和特定的未翻译区域附近被观察到。不幸的是,当考虑字符插入、删除或替换形式的突变时,回文检测算法的时间复杂度会增加。近年来,一些研究工作的目标是利用能够进行大规模搜索的专用电路来加速这种算法。然而,由于用户任务细节的变化或使用特定目标平台的需要,这种电路的广泛使用往往变得复杂。因此,这项工作的目标是创建一个用于近似回文检测的硬件架构模型,并开发一种技术,在没有经验丰富的设计师干预的情况下将该模型自动映射到目标平台。采用Virtex5技术在一系列芯片上对所提出的模型和映射技术进行了实现和评估。
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Architecture model for approximate palindrome detection
Understanding the structure and function of DNA sequences represents an important area of research in modern biology. One of the interesting structures occurring in DNA is a palindrome. Biologists believe that palindromes play an important role in regulation of gene activity and other cell processes because they are often observed near promoters, introns and specific untranslated regions. Unfortunately, the time complexity of algorithms for palindrome detection increases when mutations in the form of character insertions, deletions or substitutions are taken into consideration. In recent years, several works have been aimed at acceleration of such algorithms using dedicated circuits capable of potentially large-scale searching. However, widespread use of such circuits is often complicated by varying user task details or the need to use a specific target platform. The objective of this work is therefore to create a model of hardware architecture for approximate palindrome detection and develop a technique for automatic mapping of this model to the target platform without intervention of an experienced designer. The proposed model and the mapping technique are implemented and evaluated on a family of chips with Virtex5 technology.
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