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MinION identifies DNA bases by measuring the changes in electrical conductivity generated as DNA strands pass through a biological pore.
Sep 17, 2016MinION identifies DNA bases by measuring the changes in electrical conductivity generated as DNA strands pass through a biological pore.
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Dec 21, 2017We evaluated the performance of the MinION DNA sequencer in-flight on the International Space Station (ISS), and benchmarked its performance off-Earth.
A simple workflow to characterise any pathogen. Learn how MinION is being deployed around the world for real-time genomic surveillance.
Nov 8, 2021Nanopore sequencing is being applied in genome assembly, full-length transcript detection and base modification detection and in more specialized areas.
Generate more accurate genome assemblies using ultra-long (>4 Mb) nanopore sequencing reads. Resolve complex genomic regions and access the hidden genome.
Nov 25, 2016We summarize key technical features of the Oxford Nanopore MinION, the dominant platform currently available. We then discuss pioneering applications.
MinION identifies DNA bases by measuring the changes in electrical conductivity generated as DNA strands pass through a biological pore.
With the MinION, Oxford Nanopore offers a comparatively cost-efficient and compact sequencing technology that promises feasibility of high-throughput plant DNA�...
Mar 24, 2021In this training we will build an assembly of a bacterial genome, from data produced in “Complete Genome Sequences of Eight Methicillin-Resistant�...