Scientists use multicolor flow cytometry to identify and characterize targeted cellular subpopulations by using multiple fluorescent markers. The technology has seen rapid advancements in recent years ...
Multicolor flow cytometry is beneficial because it allows us to gain deeper insights from a given biological sample, with fewer repeat markers in each tube and quicker results. In this three-part ...
Flow cytometry is a powerful tool to analyze and characterize cells based on their protein expression, most often those expressed on the cell surface. Multicolor flow cytometry uses multiple ...
The quality of reference controls is critical for generating accurate compensation or unmixing matrices and correctly interpreting conventional or spectral flow cytometry data, respectively. Follow ...
Multicolor flow cytometry is beneficial because it allows us to gain deeper insights from a given biological sample, with fewer repeat markers in each tube and quicker results. In this three-part ...
Life science researchers first learned of the utility of flow cytometry as a result of Prof. Wolfgang Göhde’s pioneering work at the University of Münster in the late 1960s and early 1970s. Leonard ...
Flow cytometry is a single-cell analytical technique that uses fluorophore-labeled cell structures or biomarkers to differentiate between cell populations. Through this method, researchers detect the ...
The global flow cytometry market is expected to witness a CAGR of ~9% during the forecast period. High incidence and prevalence of HIV/AIDS and cancer, growing focus on immunology and immuno-oncology ...
Flow cytometry is a way to look closely at the features of cells or particles. A sample of blood or tissue goes into a machine called a cytometer. In less than a minute, a computer can analyze ...
The Flow Cytometry shared resource stays at the leading edge of technology. Close ties to industry allow us to offer users early access to new reagents and instrumentation. We help users realize a ...
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