The recent progress of single cell quantitative microscopy produced a plethora of data that demonstrated cell to cell variability in signal transduction, which provoked many possible theories that sought to explain the phenomenon of cellular variability. In order to investigate the mechanism of cell to cell variability, mathematical modeling needs to be combined with experimental approach to gain systems-level understanding. However, until now there have been few studies which applied mathematical modeling to study single cell data because of the numerous practical and theoretical hurdles. Here I develop a computational toolbox specifically designed to perform single cell model fitting efficiently on a population scale by utilizing big data...
Results from single cell imaging, facilitated by high resolution microscopy, have demonstrated cell-...
This work explores how much the traditional approach to modeling and simulation of biological system...
Fluorescent live cell time-lapse microscopy is steadily contributing to our better understanding of ...
The recent progress of single cell quantitative microscopy produced a plethora of data that demonstr...
The heterogeneity in mammalian cells signaling response is largely a result of pre-existing cell-to-...
Cellular signaling is essential in information processing and decision-making. Therefore, a variety ...
All biological systems exhibit cell-to-cell variability. Frameworks exist for understanding how stoc...
Cell-to-cell differences in signaling components can lead to qualitatively different responses to st...
Signaling proteins are flexible in both form and function. They can bind to multiple molecular partn...
Inferring cell-signaling networks from high-throughput data is a challenging problem in systems biol...
Complex biological systems can only be analysed by utilizing computational and mathematical methods....
Contemporary single-cell experiments produce vast amounts of data, but the interpretation of these d...
<div><p>The molecular complexity within a cell may be seen as an evolutionary response to the extern...
Calcium responses have been observed as spikes of the whole-cell calcium concentration in numerous c...
Calcium responses have been observed as spikes of the whole-cell calcium concentration in numerous c...
Results from single cell imaging, facilitated by high resolution microscopy, have demonstrated cell-...
This work explores how much the traditional approach to modeling and simulation of biological system...
Fluorescent live cell time-lapse microscopy is steadily contributing to our better understanding of ...
The recent progress of single cell quantitative microscopy produced a plethora of data that demonstr...
The heterogeneity in mammalian cells signaling response is largely a result of pre-existing cell-to-...
Cellular signaling is essential in information processing and decision-making. Therefore, a variety ...
All biological systems exhibit cell-to-cell variability. Frameworks exist for understanding how stoc...
Cell-to-cell differences in signaling components can lead to qualitatively different responses to st...
Signaling proteins are flexible in both form and function. They can bind to multiple molecular partn...
Inferring cell-signaling networks from high-throughput data is a challenging problem in systems biol...
Complex biological systems can only be analysed by utilizing computational and mathematical methods....
Contemporary single-cell experiments produce vast amounts of data, but the interpretation of these d...
<div><p>The molecular complexity within a cell may be seen as an evolutionary response to the extern...
Calcium responses have been observed as spikes of the whole-cell calcium concentration in numerous c...
Calcium responses have been observed as spikes of the whole-cell calcium concentration in numerous c...
Results from single cell imaging, facilitated by high resolution microscopy, have demonstrated cell-...
This work explores how much the traditional approach to modeling and simulation of biological system...
Fluorescent live cell time-lapse microscopy is steadily contributing to our better understanding of ...