Although next-generation sequencing (NGS) keeps giving—exploring the human genome and revolutionizing our knowledge of health and disease—it needs to take a little, too. At the very least, NGS ...
Next-generation sequencing (NGS) is increasingly employed to dive deeper into complex biological mechanisms in a myriad of disciplines. But as with most methodologies, the quality of the input ...
Collaboration integrates the nRichDX Revolution Plusâ„¢ Sample Prep System with the Hamilton Microlab STAR ® platform, delivering automated, high-yield liquid biopsy workflows for cfDNA, cfRNA, cfTNA, ...
Mass spectrometry has become a cornerstone technology for studying protein expression, interactions, and post-translational modifications (PTMs) across biological systems. Advances in instrumentation ...
Sample preparation involves gaining access to a feature of a sample for subsequent analysis. Doing so allows engineers and scientists to find a solution for damaged parts or better understand ...
Next-generation sequencing (NGS) is an exquisitely sensitive technique for bulk parallel sequencing of genetic material. The speed and overall efficiency of NGS workflows enable high-throughput ...
The family of electron microscopy techniques have become staple methods for imaging nanoscale objects, including nanoparticles, viruses and proteins. The appeal of electron microscopy as a ...
The images produced with a cryo-electron microscope can only be as good as the sample that goes into it. That's why Jiro Usukura, at the Structural Biology Research Center, Nagoya University, says ...
When thinking of celebrated technological innovations, it is perhaps rare that we consider the role of material scientists: the unsung heroes of advancement. Nonetheless, it is the great work of these ...
The proper preparation of heat sensitive samples is a critical aspect of laboratory work across various industries. Ensuring that samples maintain their integrity throughout the sample preparation ...
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