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The model is optimized for realistic and stable recapitulation of behavior of single cells, then for realistic simulation of multiple cells forming epithelial colonies.
Do any of these processes describe the behavior of single cells searching for a hidden target?
The behavior of single cells within a metabolic cycling population was visualized using phase-specific fluorescent reporters.
Using microscopic visualization, we aimed to better understand the YMC by examining the behavior of single cells within the cycling population.
By focusing on a quantitative aspect of differential behavior among serially homologous cells (i.e., cell cycle length within a tier), one can detect small evolutionary changes in the behavior of single cells; as shown in the case of Ilyanassa, many such small changes may summate along body axes to suggest a global evolutionary trend.
Accordingly, simulation results should be compared with experimental measurements characterizing the dynamic behavior of single cells.
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Those simulations give a plausible explanation that how the 'all-or-none' bistable behavior of single cell converts to observed gradual behavior of population data under noisy conditions.
Experiments with cell lines might not fully reflect the wide heterogeneity of human malignancies, because of poor correlation between the behavior of single cell lines in vitro and tumors encountered in patients.
These experiments have revealed interesting and unexpected behaviors of single cells within cycling populations and suggest the presence of heterogeneous subpopulations of cells that may intimately cooperate to achieve the striking synchrony of the entire population as visualized by macroscopic dissolved oxygen measurements.
We show that optogenetic control of cAMP in vivo allows to non-invasively study cAMP signaling, to control behaviors of single cells, and to restore a fundamental biological process such as fertilization.
Multidrug resistance, more than any other property of biofilms, provides a clear demonstration that population behavior is not the sum of the contributions of single cells.
More suggestions(15)
behavior of single piles
behavior of fibroblast cells
behavior of vascular cells
behavior of single men
behavior of single GFP-molecules
behavior of single droplets
behavior of iNANOG cells
behavior of many cells
behavior of single chromophores
behavior of solar cells
behavior of other cells
behavior of endothelial cells
behavior of single bubbles
behavior of malignant cells
behavior of single chondrocytes
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