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Flow cytometry is a widely-used laser-based technique that can be used to measure and quantify cell size, cell granularity, cellular markers, and intracellular components such as proteins and ...
Flow cytometry is crucial for diagnosing hematological malignancies. However, the rising number of tests and ongoing labor shortages are placing significant pressure on both the lab and its staff. Lab ...
Spectral flow cytometry is redefining how complex cell populations are analyzed by capturing full emission spectra rather than filtered light ranges. This expanded view enhances resolution and opens ...
Cell division occurs through a series of checks and balances known as the cell cycle. This cycle has four main stages, called gap 1 (G 1), synthesis (S), gap 2 (G 2), and mitotic (M) phases. The ...
The fields of virology, microbiology, nanoparticles, and extracellular vesicles (EVs) have grown tremendously over the past few years. Viruses, which range in size from 17 nm to ~1.5 µm, small ...
Flow cytometry remains a critical technology for the high-throughput analysis of single cells in complex populations. Attention to good practice for analysis is more important than ever due to the ...
In biomedical research, flow cytometry has evolved from basic cell analysis to a critical tool for high-throughput screening. As complex cell models and large-scale therapeutic discovery become more ...
Thermo Fisher Scientific introduces next-generation unmixing beads to enhance accuracy and performance in spectral and ...
BD (Becton, Dickinson and Company) (NYSE: BDX), a leading global medical technology company, announced the placement of the 1 ...
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