Tired of multi-stage genotyping workflows that slow down your sequencing projects? This high-throughput, one-step genotyping by sequencing method delivers accurate, reproducible data across species ...
Nearly every cell in the human body—from the ones in the fingernails to the ones deep inside the brain—contains a complete set of DNA, the operating instructions that influence everything from a ...
Boston Children’s Hospital, along with Broad Clinical Labs and Roche Sequencing Solutions, has demonstrated that rapid genomic sequencing and interpretation are achievable in a matter of hours. This ...
The Oxford Nanopore MinION represents a portable, real-time sequencing device that produces ultra-long reads from individual DNA and RNA molecules without the need for PCR amplification. Each MinION ...
OXFORD, England--(BUSINESS WIRE)--At the Nanopore Community Meeting, Rosemary Sinclair Dokos, Stuart Reid and Lakmal Jayasinghe showed how the Oxford Nanopore sequencing platform’s capabilities ...
There is a revolution taking place in the field of genomics. Next-generation sequencing (NGS) is getting faster and less expensive with better computational tools, enabling researchers to sequence ...
Life scientists are striving to use the information emerging or obtained from the Human Genome Project to gain insight into basic biological processes and to improve human health and disease treatment ...
This image compares three DNA sequencing technologies: Sanger sequencing, Massively Parallel DNA sequencing, and Nanopore DNA sequencing. Sanger sequencing (left) sequences 500-700 bases per reaction ...
What is Third-Generation Sequencing? Third-generation sequencing, also known as long-read sequencing, refers to the latest advancements in DNA sequencing technologies that enable the analysis of ...
Nanopore sequencing offers comparable accuracy to short-read NGS for IGH clonotyping in CLL, with advantages in cost and laboratory footprint. The study confirms reliable somatic hypermutation status ...
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