Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing technology which offers faster and cheaper sequencing than other approaches. However, accurately deciphering the DNA sequence from the noisy and complex electrical signal is challenging. Here, we report Chiron, the first deep learning model to achieve end-to-end basecalling: directly translating the raw signal to DNA sequence without the error-prone segmentation step. Trained with only a small set of 4000 reads, we show that our model provides state-of-the-art basecalling accuracy even on previously unseen species. Chiron achieves basecalling speeds of over 2000 bases per second using desktop computer graphics processing units
Nanopore sequencing, commercialized by Oxford Nanopore Technology (ONT), is a high-throughput genome...
Nanopore sequencing of DNA is a single-molecule technique that may achieve long reads, low cost and ...
Nanopore sequencing allows users to identify nucleotide sequence from ionic currents. Here, the auth...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
Nanopore-based DNA sequencing relies on basecalling the electric current signal. Basecalling1 requir...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
Third-generation DNA sequencers provided by Oxford Nanopore Technologies (ONT) produce a series of s...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
The MinION device by Oxford Nanopore produces very long reads (reads over 100 kBp were reported); ho...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
Solid-state nanopore-based electrical detection of DNA nucleotides with the quantum tunneling techni...
BACKGROUND: Basecalling, the computational process of translating raw electrical signal to nucleotid...
BACKGROUND: Basecalling, the computational process of translating raw electrical signal to nucleotid...
Nanopore sequencing enables direct measurement of RNA molecules without conversion to cDNA, thus ope...
Nanopore sequencing, commercialized by Oxford Nanopore Technology (ONT), is a high-throughput genome...
Nanopore sequencing of DNA is a single-molecule technique that may achieve long reads, low cost and ...
Nanopore sequencing allows users to identify nucleotide sequence from ionic currents. Here, the auth...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
Nanopore-based DNA sequencing relies on basecalling the electric current signal. Basecalling1 requir...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
Third-generation DNA sequencers provided by Oxford Nanopore Technologies (ONT) produce a series of s...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
The MinION device by Oxford Nanopore produces very long reads (reads over 100 kBp were reported); ho...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
Solid-state nanopore-based electrical detection of DNA nucleotides with the quantum tunneling techni...
BACKGROUND: Basecalling, the computational process of translating raw electrical signal to nucleotid...
BACKGROUND: Basecalling, the computational process of translating raw electrical signal to nucleotid...
Nanopore sequencing enables direct measurement of RNA molecules without conversion to cDNA, thus ope...
Nanopore sequencing, commercialized by Oxford Nanopore Technology (ONT), is a high-throughput genome...
Nanopore sequencing of DNA is a single-molecule technique that may achieve long reads, low cost and ...
Nanopore sequencing allows users to identify nucleotide sequence from ionic currents. Here, the auth...