Generic and scalable DNA-based logic design methodology for massive parallel computation
Author:
Publisher
Springer Science and Business Media LLC
Subject
Hardware and Architecture,Information Systems,Theoretical Computer Science,Software
Link
https://link.springer.com/content/pdf/10.1007/s11227-022-04693-z.pdf
Reference27 articles.
1. Haefner JW, Cicirelli F, Giordano A, Mastroianni C (2019) Improving Efficiency in Parallel Computing Leveraging Local Synchronization. International Conference on Numerical Computations: Theory and Algorithms. Springer, Cham
2. Beiki Z, Zare Dorabi Z, Jahanian A (2018) Real parallel and constant delay logic circuit design methodology based on the DNA model-of-computation. Microprocess Microsyst 61:217–226
3. Adleman Leonard M (1994) Molecular computation of solutions to combinatorial problems. Science 266(5187):1021–1024
4. Amos M, Gibbons A, Hodgson D (1999) Error-resistant implementation of DNA computations. In DNA Based Computers II 44: 151–161
5. Winfree E (1998) Universal Computation via Self-assembly of DNA: Some Theory and Experiments in Landweber and Baum editors, DNA Based Computers II. In Proceedings of the Second DIMACS Workshop, DIMACS Series in Discrete Mathematics and Theoretical Computer Science 44: 172–190
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