Flow cytometry is a robust analytical tool used to count cells in a solution. It provides a multi-parametric analysis of single cells (or particles) as they move past a laser, producing both scattered ...
After five decades of use, flow cytometry is entrenched in biomedical science. Besides enabling the quick processing of cells in suspension, flow cytometry provides quantitative results across ...
Flow cytometers are becoming the instrument of choice in a growing number of applications, including marine biology, cancer biology, drug screening, cell-cycle analysis, intracellular analysis, rare ...
Impedance flow cytometry measurements are adversely affected by the distance between the analyte and the sensing electrodes. By slightly squeezing the microfluidic channel, adapts the channel’s height ...
Flow-based methods allow researchers to collect multiparameter data from individual cells in their samples, but the fate of samples depends on the instrument. In addition to cell analysis, cell ...
Flow cytometry is widely used in areas of research that require analysis or isolation of cells from suspension. This technology makes use of fluorescent probes targeted to specific cell-associated ...
The upcoming webinar will delve into the advanced applications of Next Generation Flow™ in the analysis of Minimal Residual Disease (MRD) in Multiple Myeloma (MM). Dr. Juan Flores-Montero, a ...
One of the primary objectives for the application of flow cytometry in any testing environment should be measurement assurance, i.e., the generation of reliable and reproducible results. This goal can ...
Flow cytometry, a laser-based technique employed to detect and analyze the chemical and physical characteristics of cells or particles, is already widely used for the assessment of animal sperm ...
In the early 1960s, Mack Fulwyler joined the lab of Marvin Van Dilla at the Los Alamos National Laboratory as an engineer to study the effect of fallout radiation from nuclear weapons testing on ...
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