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Titlebook: DNA Computing and Molecular Programming; 16th International C Yasubumi Sakakibara,Yongli Mi Conference proceedings 2011 Springer Berlin Hei

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书目名称DNA Computing and Molecular Programming
副标题16th International C
编辑Yasubumi Sakakibara,Yongli Mi
视频video
概述High quality selected papers.Unique visibility.State of the art research
丛书名称Lecture Notes in Computer Science
图书封面Titlebook: DNA Computing and Molecular Programming; 16th International C Yasubumi Sakakibara,Yongli Mi Conference proceedings 2011 Springer Berlin Hei
描述This book constitutes the thoroughly refereed post-conference proceedings of the 16th International Conference on DNA Computing and Molecular Programming, DNA16, held in Hong Kong, China, in June 2010. The 16 revised full papers presented were carefully selected during two rounds of reviewing and improvement from 59 submissions. The papers are well balanced between theoretical and experimental work and address all areas that relate to biomolecular computing, including demonstrations of biomolecular computing, theoretical models of biomolecular computing, biomolecular algorithms, computational processes in vitro and in vivo, analysis and theoretical models of laboratory techniques, biotechnological and other applications of DNA computing, DNA nanostructures, DNA devices such as DNA motors, DNA error evaluation and correction, in vitro evolution, molecular design, self-assembled systems, nucleic acid chemistry, and simulation tools.
出版日期Conference proceedings 2011
关键词DNA circuit; DNA computing; DNA devices; DNA hybridization; DNA logic gate; DNA nanostructure; DNA-based c
版次1
doihttps://doi.org/10.1007/978-3-642-18305-8
isbn_softcover978-3-642-18304-1
isbn_ebook978-3-642-18305-8Series ISSN 0302-9743 Series E-ISSN 1611-3349
issn_series 0302-9743
copyrightSpringer Berlin Heidelberg 2011
The information of publication is updating

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High-Fidelity DNA Hybridization Using Programmable Molecular DNA Devices,ecificity of hybridization reactions depends critically on the lengths of the complementary pairs of strands and can drop to very low values for sufficiently long strands. This reduction in specificity occurs especially in the presence of . in the form of other competing strands that have sequence s
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Randomized Self Assembly of Rectangular Nano Structures, The problem of assembling squares has been well studied. A lower bound on the tile complexity of any deterministic self assembly system for an .×. square is . (inferred from the Kolmogrov complexity). Deterministic self assembly systems with an optimal tile complexity have been designed for squares
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