Motivation: The recently released Oxford Nanopore MinION sequencing platform presents many innovative features opening up potential for a range of applications not previously possible. Among these features, the ability to sequence in real-time provides a unique opportunity for many time-critical applications. While many software packages have been developed to analyze its data, there is still a lack of toolkits that support the streaming and real-time analysis of MinION sequencing data. Results: We developed npReader, an open-source software package to facilitate real-time analysis of MinION sequencing data. npReader can simultaneously extract sequence reads and stream them to downstream analysis pipelines while the samples are being sequen...
MotivationThe highly portable Oxford Nanopore MinION sequencer has enabled new applications of genom...
In 2014, Oxford Nanopore Technologies (ONT) introduced an affordable and portable sequencer called M...
Oxford Nanopore's third-generation, single-molecule sequencing platform promises to decrease costs f...
BACKGROUND: The fast-moving progress of the third-generation long-read sequencing technologies will ...
MinION and GridION X5 from Oxford Nanopore Technologies are devices for real-time DNA and RNA sequen...
MinION and GridION X5 from Oxford Nanopore Technologies are devices for real-time DNA and RNA sequen...
Summary: MinoTour offers a LIMS system for Oxford Nanopore Technology sequencers, with real-time met...
The recent introduction of a barcoding protocol for Oxford Nanopore sequencing has increased the ver...
International audienceBackground : One of the main advantages of the Oxford Nanopore Technology (ONT...
The Oxford Nanopore Technologies MinION sequencer enables the selection of specific DNA molecules fo...
The recently introduced Oxford Nanopore MinION platform generates DNA sequence data in real-time. Th...
The advent of a miniaturized DNA sequencing device with a high-throughput contextual sequencing capa...
Many genomic sequencing technologies have been developed since the Human Genome Project. These next...
Nanopore sequencing was conceived in 1989 by Dave Deamer (UCSC). Over two decades of development fro...
Motivation: Nanopore sequencing may be the next disruptive tech-nology in genomics, owing to its abi...
MotivationThe highly portable Oxford Nanopore MinION sequencer has enabled new applications of genom...
In 2014, Oxford Nanopore Technologies (ONT) introduced an affordable and portable sequencer called M...
Oxford Nanopore's third-generation, single-molecule sequencing platform promises to decrease costs f...
BACKGROUND: The fast-moving progress of the third-generation long-read sequencing technologies will ...
MinION and GridION X5 from Oxford Nanopore Technologies are devices for real-time DNA and RNA sequen...
MinION and GridION X5 from Oxford Nanopore Technologies are devices for real-time DNA and RNA sequen...
Summary: MinoTour offers a LIMS system for Oxford Nanopore Technology sequencers, with real-time met...
The recent introduction of a barcoding protocol for Oxford Nanopore sequencing has increased the ver...
International audienceBackground : One of the main advantages of the Oxford Nanopore Technology (ONT...
The Oxford Nanopore Technologies MinION sequencer enables the selection of specific DNA molecules fo...
The recently introduced Oxford Nanopore MinION platform generates DNA sequence data in real-time. Th...
The advent of a miniaturized DNA sequencing device with a high-throughput contextual sequencing capa...
Many genomic sequencing technologies have been developed since the Human Genome Project. These next...
Nanopore sequencing was conceived in 1989 by Dave Deamer (UCSC). Over two decades of development fro...
Motivation: Nanopore sequencing may be the next disruptive tech-nology in genomics, owing to its abi...
MotivationThe highly portable Oxford Nanopore MinION sequencer has enabled new applications of genom...
In 2014, Oxford Nanopore Technologies (ONT) introduced an affordable and portable sequencer called M...
Oxford Nanopore's third-generation, single-molecule sequencing platform promises to decrease costs f...