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Random Coding Bounds for DNA codes based on Fibonacci ensembles of DNA sequences.

, , , and . ISIT, page 2292-2296. IEEE, (2008)

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Free Energy Gap and Statistical Thermodynamic Fidelity of DNA Codes., , , , and . J. Comput. Biol., 14 (8): 1088-1104 (2007)New t-Gap Insertion-Deletion-Like Metrics for DNA Hybridization Thermodynamic Modeling., , , , , and . J. Comput. Biol., 13 (4): 866-881 (2006)Hypothesis group testing for disjoint pairs., , , and . J. Comb. Optim., 15 (1): 7-16 (2008)Random Coding Bounds for DNA codes based on Fibonacci ensembles of DNA sequences., , , and . ISIT, page 2292-2296. IEEE, (2008)New results on DNA codes., , , , and . ISIT, page 283-287. IEEE, (2005)New, Improved, and Practical k-Stem Sequence Similarity Measures for Probe Design., , , and . J. Comput. Biol., 15 (5): 525-534 (2008)Group Testing to Annihilate Pairs Applied to DNA Cross-Hybridization Elimination Using SYBR Green I., , , , , and . J. Comput. Biol., 14 (1): 84-96 (2007)Pcr Nonadaptive Group Testing of DNA Libraries for Biomolecular Computing and Taggant Applications., , , , and . Discret. Math. Algorithms Appl., 1 (1): 59-70 (2009)On critical relative distance of DNA codes for additive stem similarity., , , , and . ISIT, page 1325-1329. IEEE, (2010)A Weighted Insertion-Deletion Stacked Pair Thermodynamic Metric for DNA Codes., , , , , and . DNA, volume 3384 of Lecture Notes in Computer Science, page 90-103. Springer, (2004)