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Successful migration from radioactive irradiators to x-ray irradiators

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Dec 9, 2019

This paper summarizes about 9 years of effort by Mount Sinai to successfully migrate completely from radioactive...

New NovoCyte Advanteon - Performance you can trust with the flexibility you need

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The NovoCyte Advanteon flow cytometer builds upon the highly successful NovoCyte, and NovoCyte Quanteon, to provide an...

Webinar recording: 4D monitoring of bone and (re)modeling events using in vivo micro-CT

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Catheter blockage by ureolytic biofilm-forming pathogens is a significant problem for health services, with 2,000...

Dec 10, 2019

Bruker MRI consistent quantification

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Regardless of the method, stability and reproducibility are a must for many laboratories. Identical protocols must...

Targeted sequencing of highly homologous genes using Cas9 digestion

Sage Science

Nov 25, 2019

Integrated DNA extraction, digestion, and size-selection using HLS-CATCH were introduced for addressing the problem of...

Multirad - Fully integrated x-ray irradiation system

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The new X-RAD 160 qube is suitable for either mounting on the lab bench or mobile on an optional wheeled cart, allowing...

Dec 10, 2019

AVATAR system: A unique capability for functional screening of tumor microenvironment

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The AVATAR Cell Control System lets you generate your cells of interest and optimize to a growth rate, functional...

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Targeted mitochondrial DNA extraction and enrichment using the SageHLS

Oct 31, 2019

To ensure detection of low abundance mtDNA mutations without interference from nuclear pseudogenes, many researchers enrich mitochondria using differential gradient centrifugation, or enrich specific mitochondrial DNA sequences by PCR, before NGS sequence analysis. Scientist demonstrate a novel approach to mtDNA isolation using the SageHLS platform which provides enrichment levels comparable to gradient centrifugation, but with a small fraction of the hands-on time.

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Related technologies: Targeted DNA/protein size collection

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Preparative electrophoresis systems for targeted size selection of biomolecules.

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Targeted Size Selection for Next-Gen Sequencing (90bp – 1.5kb)

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Targeted Size Selection for Next-Gen Sequencing (90bp – 50kb)

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Automated size selection for 24 samples at a time.

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