Within complex biological samples, the most important cells are often the hardest to find. Identifying, characterizing, and isolating rare or functionally-distinct populations has become central to ...
Flow cytometry continues to evolve, yet many experiments are still limited by avoidable issues in panel design, control selection, reagent handling, and instrument understanding. As analytical ...
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 ...
The generation of durable CD8+ T cell memory following infection or vaccination is essential for protection against future encounters with the same or related pathogens. This process has traditionally ...
Over the past decade, flow cytometry has undergone transformative advancements, notably with the adoption of spectral flow cytometry and the emergence of next-generation imaging cytometers. These ...
Illumina’s NovaSeq 6000 provides access to the most powerful, high-throughput sequencing instrument available that allows for faster and more cost-effective genomic analyses. The largest benefit is ...
The Flow Cytometry shared resource is supported by user fees and the Cancer Center Support Grant, or CCSG. When citing the CCSG, we recommend the following language: This research was supported by the ...
The capability to sort single cells of interest and to deeply characterize them has greatly added to our understanding of biology and disease states. Indeed, cell sorting has become an indispensable ...
Abstract: Microfluidic impedance flow cytometry (IFC) is a widely used technique for high-throughput analysis and single-cell identification, analyzing cells based on their electrical properties ...
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 ...