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This Article Collection hopes to provide scientists with more information on Full Spectrum Flow Cytometry and Autofluorescence allowing you to further your research in this field.
What you will learn:
- Full spectrum cytometry for enhancing the resolution of highly autofluorescent samples
- Challenges and solutions for high-dimensional immunoprofiling
- Protocols for panel design and analysis
- Protocols for single-cell profiling of microglia
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Articles contained in the collection:
- Kharraz, Y. et al. (2022). Full spectrum cytometry improves the resolution of highly autofluorescent biological samples: Identification of myeloid cells in regenerating skeletal muscles. Cytometry Part A. DOI: 10.1002/CYTO.A.24568.
- Kare, A.J. et al. (2023). OMIP-095: 40-Color spectral flow cytometry delineates all major leukocyte populations in murine lymphoid tissues. Cytometry Part A. DOI: 10.1002/CYTO.A.24788.
- Ferrer-Font, L. et al. (2021). Panel Optimization for High-Dimensional Immunophenotyping Assays Using Full-Spectrum Flow Cytometry. Current Protocols. DOI: 10.1002/CPZ1.222.
- Farrand, K. et al. (2022). Using Full-Spectrum Flow Cytometry to Phenotype Memory T and NKT Cell Subsets with Optimized Tissue-Specific Preparation Protocols. Current Protocols. DOI: 10.1002/CPZ1.482.
- Spiteri, A.G. et al. (2024). High-Dimensional Methods of Single-Cell Microglial Profiling to Enhance Understanding of Neuropathological Disease. Current Protocols. DOI: 10.1002/CPZ1.985.