AbstractThe Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentially offers read lengths of tens of kilobases (kb) limited only by the length of DNA molecules presented to it. The device has a low capital cost, is by far the most portable DNA sequencer available, and can produce data in real-time. It has numerous prospective applications including improving genome sequence assemblies and resolution of repeat-rich regions. Before such a technology is widely adopted, it is important to assess its performance and limitations in respect of throughput and accuracy. In this study we assessed the performance of the MinION by re-sequencing three bacterial genomes, with very different nucleotide compositions ranging ...
Abstract Background Short-read sequencing technologies have made microbial genome sequencing cheap a...
Transcript sequencing is a crucial tool for gaining a deep understanding of biological processes in ...
Oxford Nanopore's third-generation, single-molecule sequencing platform promises to decrease costs f...
The Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentially offers...
Journal ArticleCopyright © 2015 The Authors. Published by Elsevier GmbH.The Oxford Nanopore Technolo...
AbstractThe Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentiall...
Sequencing technologies have evolved dramatically since the first two bacterial genomes were publish...
Today's short-read sequencing instruments can generate read lengths between 50 bp and 700 bp dependi...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
In 2014, Oxford Nanopore Technologies (ONT) introduced an affordable and portable sequencer called M...
The revolution of genome sequencing is continuing after the successful second-generation sequencing ...
In 2014, Oxford Nanopore Technologies (ONT) introduced an affordable and portable sequencer called M...
In 2014, Oxford Nanopore Technologies (ONT) introduced an affordable and portable sequencer called M...
Sequencing technologies have evolved dramatically since the first two bacterial genomes were publish...
Oxford Nanopore's third-generation, single-molecule sequencing platform promises to decrease costs f...
Abstract Background Short-read sequencing technologies have made microbial genome sequencing cheap a...
Transcript sequencing is a crucial tool for gaining a deep understanding of biological processes in ...
Oxford Nanopore's third-generation, single-molecule sequencing platform promises to decrease costs f...
The Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentially offers...
Journal ArticleCopyright © 2015 The Authors. Published by Elsevier GmbH.The Oxford Nanopore Technolo...
AbstractThe Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentiall...
Sequencing technologies have evolved dramatically since the first two bacterial genomes were publish...
Today's short-read sequencing instruments can generate read lengths between 50 bp and 700 bp dependi...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
In 2014, Oxford Nanopore Technologies (ONT) introduced an affordable and portable sequencer called M...
The revolution of genome sequencing is continuing after the successful second-generation sequencing ...
In 2014, Oxford Nanopore Technologies (ONT) introduced an affordable and portable sequencer called M...
In 2014, Oxford Nanopore Technologies (ONT) introduced an affordable and portable sequencer called M...
Sequencing technologies have evolved dramatically since the first two bacterial genomes were publish...
Oxford Nanopore's third-generation, single-molecule sequencing platform promises to decrease costs f...
Abstract Background Short-read sequencing technologies have made microbial genome sequencing cheap a...
Transcript sequencing is a crucial tool for gaining a deep understanding of biological processes in ...
Oxford Nanopore's third-generation, single-molecule sequencing platform promises to decrease costs f...