Comparison of state-of-the-art error-correction coding for sequence-based DNA data storage
Gimpel, A. L.; Remschak, A.; Stark, W. J.; Heckel, R.; Grass, R. N.
Show abstract
A wide range of codecs with vastly different error-correction approaches have been proposed and implemented for DNA data storage to date. However, while many codecs claim to provide superior performance, no studies have systematically benchmarked codec implementations to establish the current state-of-the-art in DNA data storage. In this study, we use standardized error scenarios - both in silico and in vitro - to compare the performance of six representative codecs from the literature. We find synthetic benchmarks commonly used in literature to be unsuitable indicators of codec performance, as our data shows that common experimental benchmarks fail to differentiate codecs under standardized conditions. Instead, we implement a comprehensive benchmark covering the major experimental parameters to assess codec performance under realistic DNA data storage conditions, while establishing important baselines for future codec development. Verifying our results with fair and standardized experiments, we demonstrate data storage at 43 EB g-1 using synthesis by material deposition and 13 EB g-1 using the more error prone electrochemical synthesis, employing only existing codecs from the literature. Besides closing in on the physical limits of DNA data storage, this study thus showcases the maturity of error-correction coding and defines its current state-of-the-art.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A digital twin for DNA data storage based on comprehensive quantification of errors and biases 98%
- Composite Hedges Nanopores: A High INDEL-Correcting Codec System for Rapid and Portable DNA Data Readout 96%
- De Novo Non-Canonical Nanopore Basecalling Enables Private Communication using Heavily-modified DNA Data at Single-Molecule Level 96%
Similar papers in this journal
- Highly Specific Enrichment of Rare Nucleic Acids using Thermus Thermophilus Argonaute with Applications in Cancer Diagnostics 94%
- ModiDeC: a multi-RNA modification classifier for direct nanopore sequencing 94%
- Unlocking the Full Potential of Nanopore Sequencing: Tips, Tricks, and Advanced Data Analysis Techniques 94%
Similar papers in this journal
- Hairpin structure facilitates high-fidelity DNA amplification reactions in both qPCR and high-throughput sequencing 93%
- Sequencing ultra-rare targets with compound nucleic acid cytometry 93%
- Well-Paired-Seq2: High-Throughput and High-Sensitivity Strategy for Characterizing Low RNA-Content Cell/Nucleus Transcriptomes 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.