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Zebrafish heart imaging

Bruker Biospin

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Today watch this interesting video interview with Anabela Bensimon-Brito, Department of Developmental Genetics, Max...

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Sage Science

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Sage Science introduced a novel approach for enriching mitochondrial DNA for sequence analysis without PCR or gradient...

Join the webcast: Addressing cancer gene therapy efficacy with IncuCyte Live–Cell Imaging

Sartorius

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During this webinar, Dr Pierre Cordelier will discuss the use of IncuCyte Live-Cell Imaging and Analysis, to track gene...

Oncolytic chimeric orthopoxvirus causes regression of pancreatic cancer at a single low dose

Spectral Instruments Imaging

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Pancreatic ductal adenocarcinoma (PDAC) has been increasing by 0.5% per year in the United States. This study describes...

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New code dedicated to esophageal procedures with Confocal Laser Endomicroscopy

Mauna Kea Technologies

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Announcement of the creation of a new specific procedural code to be added to the Common Classification of Medical...

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Next-generation mapping identifies large structural variants in plant and animal genomes

Oct 18, 2017

Recent studies show that the heritability of many complex phenotypes is the result of large structural variation (SVs) rather than SNPs. Structural variants make up the majority of genomic variation, but NGS can’t correctly identify them. Bionano next-generation mapping is the only technology that can show you all SV types, homozygous and heterozygous, starting at 1000 bp up to millions of bp and detects seven times more SVs larger than 5 kbp compared to NGS.

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Related technologies: Genome mapping

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BioNano Genomics

A revolutionary NanoChannel technology for Genome mapping of extremely long DNA without amplification, providing long-range contiguity and eliminating PCR bias.

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Genome maps of extremely long DNA without amplification, providing long-range contiguity and eliminating PCR bias

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Saphyr provides rapid, high-throughput, long-range genome mapping with unmatched structural variation discovery capabilities

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