BACKGROUND: Basecalling, the computational process of translating raw electrical signal to nucleotide sequence, is of critical importance to the sequencing platforms produced by Oxford Nanopore Technologies (ONT). Here, we examine the performance of different basecalling tools, looking at accuracy at the level of bases within individual reads and at majority-rule consensus basecalls in an assembly. We also investigate some additional aspects of basecalling: training using a taxon-specific dataset, using a larger neural network model and improving consensus basecalls in an assembly by additional signal-level analysis with Nanopolish. RESULTS: Training basecallers on taxon-specific data results in a significant boost in consensus accuracy, mo...
Xiaohu Shen and Haris Vikalo are with Department of Electrical and Computer Engineering, University ...
In an effort to make DNA sequencing more accessible and affordable, Oxford Nanopore Technologies dev...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
BACKGROUND: Basecalling, the computational process of translating raw electrical signal to nucleotid...
Nanopore-based DNA sequencing relies on basecalling the electric current signal. Basecalling1 requir...
This repository uses a bacterial genome to assess the read accuracy and consensus sequence accuracy ...
Nanopore DNA sequencing is a method in which DNA bases are determined (basecalled) using electric cu...
The MinION device by Oxford Nanopore produces very long reads (reads over 100 kBp were reported); ho...
Third-generation DNA sequencers provided by Oxford Nanopore Technologies (ONT) produce a series of s...
We develop a general computational approach for improving the accuracy of basecalling with Oxford Na...
Basecalling is an essential step in nanopore sequencing analysis where the raw signals of nanopore s...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
MotivationThe highly portable Oxford Nanopore MinION sequencer has enabled new applications of genom...
AbstractThe Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentiall...
Abstract Nanopore sequencing is a rapidly maturing technology delivering long reads in real time on ...
Xiaohu Shen and Haris Vikalo are with Department of Electrical and Computer Engineering, University ...
In an effort to make DNA sequencing more accessible and affordable, Oxford Nanopore Technologies dev...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
BACKGROUND: Basecalling, the computational process of translating raw electrical signal to nucleotid...
Nanopore-based DNA sequencing relies on basecalling the electric current signal. Basecalling1 requir...
This repository uses a bacterial genome to assess the read accuracy and consensus sequence accuracy ...
Nanopore DNA sequencing is a method in which DNA bases are determined (basecalled) using electric cu...
The MinION device by Oxford Nanopore produces very long reads (reads over 100 kBp were reported); ho...
Third-generation DNA sequencers provided by Oxford Nanopore Technologies (ONT) produce a series of s...
We develop a general computational approach for improving the accuracy of basecalling with Oxford Na...
Basecalling is an essential step in nanopore sequencing analysis where the raw signals of nanopore s...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
MotivationThe highly portable Oxford Nanopore MinION sequencer has enabled new applications of genom...
AbstractThe Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentiall...
Abstract Nanopore sequencing is a rapidly maturing technology delivering long reads in real time on ...
Xiaohu Shen and Haris Vikalo are with Department of Electrical and Computer Engineering, University ...
In an effort to make DNA sequencing more accessible and affordable, Oxford Nanopore Technologies dev...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...