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Utilization of a mechanical homogenization-based direct-to-PCR method for influenza A virus detection
In this application note, we present a robust efficient mechanical homogenization to Direct-to-PCR method for Influenza detection.

SARS-CoV-2 detection in saliva using bead-beating homogenization and an RT-PCR kit
We explore the use of saliva sampling and the Omni Bead Ruptor Elite for effective, reliable SARS-CoV-2 detection.

Protein extraction from soft tissues using the Omni Bead Ruptor Elite bead mill homogenizer
Explore how the Omni Bead Ruptor Elite enhances protein extraction from soft tissues for proteomics.

Countering vascular calcification through mitochondrial phosphate transport inhibition in a CKD murine model
Researcher using in vivo imaging to study countering vascular calcification through mitochondrial phosphate transport inhibition in chronic kidney disease.

Total protein quantification from umbilical cord tissue using the Omni Bead Ruptor Elite bead mill homogenizer for sample preparation
We explore the Omni Bead Ruptor Elite’s efficiency in fixed umbilical cord tissue homogenization for protein extraction.

Extraction of human coronavirus 229E from feces for RT-qPCR of the nucleocapsid gene using the Omni Bead Ruptor
Extraction of human coronavirus 229E from feces for RT-qPCR of the nucleocapsid gene using the Omni Bead Ruptor

A novel non-Invasive in vivo tool for the assessment of NASH
Visualizing and quantifying NASH in a preclinical in vivo imaging model using the IVIS Lumina Series III optical and Quantum GX2 microCT imaging systems.

Automation of tissue homogenization in protein analysis workflows using the Omni LH96 automated workstation
Benchmarking data and performance Omni LH 96 automated homogenizer workstation on tissues for protein expression in drug discovery and development.

Automated ultrasound for non-invasive in vivo evaluation of liver disease progression in mice
Case study evaluated automated ultrasound for non-invasive in vivo evaluation of liver disease progression in mice.

Ultrasound imaging provides noninvasive 3D views into vascular changes in response to cancer therapy
Ultrasound imaging using the Vega® automated system provides noninvasive 3D views into vascular changes in response to cancer therapy.

A whole new perspective on ultrasound imaging
Introducing Vega®, automated, hands-free, high-throughput ultrasound for preclinical research.

The role of in vivo imaging in drug discovery and development
Preclinical in vivo imaging helps to ensure that smart choices are made by providing go/no-go decisions and de-risking drug candidates early on, significantly reducing time to the clinic and lowering costs all while maximizing biological understanding.


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