Contemporary single-cell experiments produce vast amounts of data, but the interpretation of these data is far from straightforward. In particular, understanding mechanisms and sources of cell-to-cell variability, given highly complex and nonlinear cellular networks, precludes intuitive interpretation. It requires careful computational and mathematical analysis instead. Here, we discuss different types of single-cell data and computational, model-based methods currently used to analyze them. We argue that mechanistic models incorporating subpopulation or cell-specific parameters can help to identify sources of variation and to understand experimentally observed behaviors. We highlight how data types and qualities, together with the nonlinea...
Single-cell responses are shaped by the geometry of signalling kinetic trajectories carved in a mult...
Our knowledge of how individual cells self-organize to form complex multicellular systems is being r...
<div><p>Significant cell-to-cell heterogeneity is ubiquitously observed in isogenic cell populations...
Advances in time-lapse microscopy enable us to observe many individual cells for a long duration of ...
Experimental techniques in biology such as microfluidic devices and time-lapse microscopy allow trac...
The recent progress of single cell quantitative microscopy produced a plethora of data that demonstr...
Populations of cells are almost always heterogeneous in function and fate. To understand the plastic...
Complex biological systems can only be analysed by utilizing computational and mathematical methods....
Purpose of Review: the purpose of this study is to outline how ideas from information theory may be ...
Creative Commons Attribution-Noncommercial License The cell cycle is one of the fundamental processe...
International audienceSignificant cell-to-cell heterogeneity is ubiquitously observed in isogenic ce...
Significant cell-to-cell heterogeneity is ubiquitously observed in isogenic cell populations. Conseq...
Carolin Loos introduces two novel approaches for the analysis of single-cell data. Both approaches c...
Fluorescent live cell time-lapse microscopy is steadily contributing to our better understanding of ...
Understanding the inherited nature of how biological processes dynamically change over time and exhi...
Single-cell responses are shaped by the geometry of signalling kinetic trajectories carved in a mult...
Our knowledge of how individual cells self-organize to form complex multicellular systems is being r...
<div><p>Significant cell-to-cell heterogeneity is ubiquitously observed in isogenic cell populations...
Advances in time-lapse microscopy enable us to observe many individual cells for a long duration of ...
Experimental techniques in biology such as microfluidic devices and time-lapse microscopy allow trac...
The recent progress of single cell quantitative microscopy produced a plethora of data that demonstr...
Populations of cells are almost always heterogeneous in function and fate. To understand the plastic...
Complex biological systems can only be analysed by utilizing computational and mathematical methods....
Purpose of Review: the purpose of this study is to outline how ideas from information theory may be ...
Creative Commons Attribution-Noncommercial License The cell cycle is one of the fundamental processe...
International audienceSignificant cell-to-cell heterogeneity is ubiquitously observed in isogenic ce...
Significant cell-to-cell heterogeneity is ubiquitously observed in isogenic cell populations. Conseq...
Carolin Loos introduces two novel approaches for the analysis of single-cell data. Both approaches c...
Fluorescent live cell time-lapse microscopy is steadily contributing to our better understanding of ...
Understanding the inherited nature of how biological processes dynamically change over time and exhi...
Single-cell responses are shaped by the geometry of signalling kinetic trajectories carved in a mult...
Our knowledge of how individual cells self-organize to form complex multicellular systems is being r...
<div><p>Significant cell-to-cell heterogeneity is ubiquitously observed in isogenic cell populations...