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Overcoming high nanopore basecaller error rates for DNA storage via basecaller-decoder integration and convolutional codes
View ORCID ProfileShubham Chandak, Joachim Neu, Kedar Tatwawadi, Jay Mardia, Billy Lau, Matthew Kubit, Reyna Hulett, Peter Griffin, Mary Wootters, Tsachy Weissman, Hanlee Ji
doi: https://doi.org/10.1101/2019.12.20.871939
Shubham Chandak
Stanford University, Stanford, CA, USA
Joachim Neu
Stanford University, Stanford, CA, USA
Kedar Tatwawadi
Stanford University, Stanford, CA, USA
Jay Mardia
Stanford University, Stanford, CA, USA
Billy Lau
Stanford University, Stanford, CA, USA
Matthew Kubit
Stanford University, Stanford, CA, USA
Reyna Hulett
Stanford University, Stanford, CA, USA
Peter Griffin
Stanford University, Stanford, CA, USA
Mary Wootters
Stanford University, Stanford, CA, USA
Tsachy Weissman
Stanford University, Stanford, CA, USA
Hanlee Ji
Stanford University, Stanford, CA, USA
Posted December 20, 2019.
Overcoming high nanopore basecaller error rates for DNA storage via basecaller-decoder integration and convolutional codes
Shubham Chandak, Joachim Neu, Kedar Tatwawadi, Jay Mardia, Billy Lau, Matthew Kubit, Reyna Hulett, Peter Griffin, Mary Wootters, Tsachy Weissman, Hanlee Ji
bioRxiv 2019.12.20.871939; doi: https://doi.org/10.1101/2019.12.20.871939
Overcoming high nanopore basecaller error rates for DNA storage via basecaller-decoder integration and convolutional codes
Shubham Chandak, Joachim Neu, Kedar Tatwawadi, Jay Mardia, Billy Lau, Matthew Kubit, Reyna Hulett, Peter Griffin, Mary Wootters, Tsachy Weissman, Hanlee Ji
bioRxiv 2019.12.20.871939; doi: https://doi.org/10.1101/2019.12.20.871939
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