Reconstruction Codes for DNA Sequences with Uniform Tandem-Duplication Errors
January 18, 2018 Β· Declared Dead Β· π International Symposium on Information Theory
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Authors
Yonatan Yehezkeally, Moshe Schwartz
arXiv ID
1801.06022
Category
cs.IT: Information Theory
Citations
33
Venue
International Symposium on Information Theory
Last Checked
6 months ago
Abstract
DNA as a data storage medium has several advantages, including far greater data density compared to electronic media. We propose that schemes for data storage in the DNA of living organisms may benefit from studying the reconstruction problem, which is applicable whenever multiple reads of noisy data are available. This strategy is uniquely suited to the medium, which inherently replicates stored data in multiple distinct ways, caused by mutations. We consider noise introduced solely by uniform tandem-duplication, and utilize the relation to constant-weight integer codes in the Manhattan metric. By bounding the intersection of the cross-polytope with hyperplanes, we prove the existence of reconstruction codes with greater capacity than known error-correcting codes, which we can determine analytically for any set of parameters.
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