Results 241 to 250 of about 5,800,592 (273)
scnanoseq: an nf-core pipeline for Oxford Nanopore single-cell RNA-sequencing. [PDF]
Trull A, Worthey EA, Ianov L.
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Oxford Nanopore MinION Sequencing and Genome Assembly
Abstract The revolution of genome sequencing is continuing after the successful second-generation sequencing (SGS) technology. The third-generation sequencing (TGS) technology, led by Pacific Biosciences (PacBio), is progressing rapidly, moving from a technology once only capable of providing data for small genome analysis, or for ...
Francesca Giordano, Zemin Ning
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Assessing the performance of the Oxford Nanopore Technologies MinION
The 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.
Thomas W Laver, David J. Studholme
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Oxford Nanopore sequencing: new opportunities for plant genomics? [PDF]
Abstract DNA sequencing was dominated by Sanger’s chain termination method until the mid-2000s, when it was progressively supplanted by new sequencing technologies that can generate much larger quantities of data in a shorter time. At the forefront of these developments, long-read sequencing technologies (third-generation sequencing) can
Rod J Snowdon +2 more
exaly +5 more sources
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Applications of Oxford Nanopore Sequencing in Schizosaccharomyces pombe
2020Recent years have seen great progresses in third-generation sequencing. New commercial platforms from Oxford Nanopore Technologies (ONT) can generate ultra-long reads from single-molecule nucleic acid fragments of kilobases up to megabases, exceeding the limitation of short reads and dependency on template amplification suffered by the previous ...
Ming, He, Xu, Chi, Jie, Ren
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1D Genome Sequencing on the Oxford Nanopore MinION
Current Protocols in Human Genetics, 2017AbstractToday's short‐read sequencing instruments can generate read lengths between 50 bp and 700 bp depending on the specific instrument. These high‐throughput sequencing approaches have revolutionized genomic science, allowing hundreds of thousands of full genomes to be sequenced, and have become indispensable tools for many researchers. With greater
Sara, Goodwin +2 more
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A first look at the Oxford Nanopore MinION sequencer
Molecular Ecology Resources, 2014AbstractOxford Nanopore's third‐generation single‐molecule sequencing platform promises to decrease costs for reagents and instrumentation. After a 2‐year hiatus following the initial announcement, the first devices have been released as part of an early access program. We explore the performance of this platform by resequencing the lambda phage genome,
Alexander S, Mikheyev, Mandy M Y, Tin
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Oxford Nanopore raises $140 million
Chemical & Engineering News, 2018The British DNA sequencer company Oxford Nanopore Technologies has raised $140 million from a group of investors. The company sells the MinION, a popular handheld gene sequencer that can be plugged into a laptop to read DNA sequences in remote locations, including aboard the International Space Station.
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Approaches to Whole Mitochondrial Genome Sequencing on the Oxford Nanopore MinION
Current Protocols in Human Genetics, 2019AbstractTraditional approaches for interrogating the mitochondrial genome often involve laborious extraction and enrichment protocols followed by Sanger sequencing. Although preparation techniques are still demanding, the advent of next‐generation or massively parallel sequencing has made it possible to routinely obtain nucleotide‐level data with ...
Roxanne R, Zascavage +5 more
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