Logic Calculation Based on Two-Domain DNA Strand Displacement
DNA strand displacement technology has become one of the most commonly used in biological computing technology. In this paper, we design a calculation model of the basic logic unit based on two-domain DNA strand displacement and logical relation, including AND, OR logic gates. The calculation proces...
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Published in | Advances in Neural Networks - ISNN 2017 Vol. 10261; pp. 161 - 169 |
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Main Authors | , , , |
Format | Book Chapter |
Language | English |
Published |
Switzerland
Springer International Publishing AG
2017
Springer International Publishing |
Series | Lecture Notes in Computer Science |
Subjects | |
Online Access | Get full text |
ISBN | 3319590715 9783319590714 |
ISSN | 0302-9743 1611-3349 |
DOI | 10.1007/978-3-319-59072-1_20 |
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Abstract | DNA strand displacement technology has become one of the most commonly used in biological computing technology. In this paper, we design a calculation model of the basic logic unit based on two-domain DNA strand displacement and logical relation, including AND, OR logic gates. The calculation process is simple and easy to understand, because of the unified single strand structure. The process of the reaction is more thorough and more easy to control. The model is used to construct a converter of a four-bit binary into BCD code. The whole reaction process can be programmed and simulated in the software Visual DSD, and the result also verifies the correctness of the design of the basic logic calculation model. |
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AbstractList | DNA strand displacement technology has become one of the most commonly used in biological computing technology. In this paper, we design a calculation model of the basic logic unit based on two-domain DNA strand displacement and logical relation, including AND, OR logic gates. The calculation process is simple and easy to understand, because of the unified single strand structure. The process of the reaction is more thorough and more easy to control. The model is used to construct a converter of a four-bit binary into BCD code. The whole reaction process can be programmed and simulated in the software Visual DSD, and the result also verifies the correctness of the design of the basic logic calculation model. |
Author | Wang, Xiaobiao Zheng, Xuedong Zhou, Changjun Zhang, Qiang |
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Editor | Wei, Qinglai Cong, Fengyu Leung, Andrew |
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PublicationSubtitle | 14th International Symposium, ISNN 2017, Sapporo, Hakodate, and Muroran, Hokkaido, Japan, June 21-26, 2017, Proceedings, Part I |
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Snippet | DNA strand displacement technology has become one of the most commonly used in biological computing technology. In this paper, we design a calculation model of... |
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SubjectTerms | Calculation model DNA strand displacement Logic gate |
Title | Logic Calculation Based on Two-Domain DNA Strand Displacement |
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