Results: Representative Interspecies Segmentation and Variability Analyses
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Conclusion
副本
This technique offers a unique research to for proving your cell's identity or physiological characteristics at the single-cell level without the need for invasive tagging. The main advantages of this technique are that it facilitates single-cell
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Here, a protocol is presented for optically extracting and cataloging innate cellular fluorescence signatures (i.e., cellular autofluorescence) from every individual live cell distributed in a three-dimensional space. This method is suitable for studying the innate fluorescence signature of diverse biological systems at a single-cell resolution, including cells from bacteria, fungi, yeasts, plants, and animals.