Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, sequencing can be done almost anywhere, and longer reads are obtained than with next-generation sequencing. The main bottleneck still lies in data postprocessing which consists of basecalling, genome assembly, and localizing significant sequences, which is time consuming and computationally demanding, thus prolonging delivery of crucial results for clinical practice. Here, we present a neural network-based method capable of detecting and classifying specific genomic regions already in raw nanopore signals—squiggles. Therefore, the basecalling process can be omitted entirely as the raw signals of significant genes, or intergenic regions can be dire...
Solid-state nanopore-based electrical detection of DNA nucleotides with the quantum tunneling techni...
Conventional targeted sequencing methods eliminate many of the benefits of nanopore sequencing, such...
Curated dataset for the manuscript named "DeepSelectNet: Deep Neural Network Based Selective Sequenc...
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...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
Nanopore sequencing, commercialized by Oxford Nanopore Technology (ONT), is a high-throughput genome...
Nanopore sequencing is a new and rapidly developing technology that allows for the direct sequencing...
Abstract We present SquiggleNet, the first deep-learning model that can classify nanopore reads dire...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
Nanopore sequencing enables direct measurement of RNA molecules without conversion to cDNA, thus ope...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
The MinION device by Oxford Nanopore produces very long reads (reads over 100 kBp were reported); ho...
Abstract Long-read sequencing enables variant detection in genomic regions that are considered diffi...
Nanopore-based DNA sequencing relies on basecalling the electric current signal. Basecalling1 requir...
Solid-state nanopore-based electrical detection of DNA nucleotides with the quantum tunneling techni...
Conventional targeted sequencing methods eliminate many of the benefits of nanopore sequencing, such...
Curated dataset for the manuscript named "DeepSelectNet: Deep Neural Network Based Selective Sequenc...
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...
Recently, nanopore sequencing has come to the fore as library preparation is rapid and simple, seque...
Nanopore sequencing, commercialized by Oxford Nanopore Technology (ONT), is a high-throughput genome...
Nanopore sequencing is a new and rapidly developing technology that allows for the direct sequencing...
Abstract We present SquiggleNet, the first deep-learning model that can classify nanopore reads dire...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
Nanopore sequencing enables direct measurement of RNA molecules without conversion to cDNA, thus ope...
Sequencing by translocating DNA fragments through an array of nanopores is a rapidly maturing techno...
The MinION device by Oxford Nanopore produces very long reads (reads over 100 kBp were reported); ho...
Abstract Long-read sequencing enables variant detection in genomic regions that are considered diffi...
Nanopore-based DNA sequencing relies on basecalling the electric current signal. Basecalling1 requir...
Solid-state nanopore-based electrical detection of DNA nucleotides with the quantum tunneling techni...
Conventional targeted sequencing methods eliminate many of the benefits of nanopore sequencing, such...
Curated dataset for the manuscript named "DeepSelectNet: Deep Neural Network Based Selective Sequenc...