Related Experiment Video
Updated: Mar 23, 2026

Mapping the Emergent Spatial Organization of Mammalian Cells using Micropatterns and Quantitative Imaging
Published on: April 30, 2019
Coalescent models for developmental biology and the spatio-temporal dynamics of growing tissues
Patrick Smadbeck1, Michael P H Stumpf2
1Centre for Integrative Systems Biology, Imperial College London, London SW7 2AZ, UK.
Abstract:
Development is a process that needs to be tightly coordinated in both space and time. Cell tracking and lineage tracing have become important experimental techniques in developmental biology and allow us to map the fate of cells and their progeny. A generic feature of developing and homeostatic tissues that these analyses have revealed is that relatively few cells give rise to the bulk of the cells in a tissue; the lineages of most cells come to an end quickly. Computational and theoretical biologists/physicists have, in response, developed a range of modelling approaches, most notably agent-based modelling. These models seem to capture features observed in experiments, but can also become computationally expensive. Here, we develop complementary genealogical models of tissue development that trace the ancestry of cells in a tissue back to their most recent common ancestors. We show that with both bounded and unbounded growth simple, but universal scaling relationships allow us to connect coalescent theory with the fractal growth models extensively used in developmental biology. Using our genealogical perspective, it is possible to study bulk statistical properties of the processes that give rise to tissues of cells, without the need for large-scale simulations.
Related Concept Videos
Modeling with Differential Equations
Cells Coordinate Growth and Proliferation
Cells Coordinate Growth and Proliferation
Growth Models with Integration: Problem Solving
Exponential Equations for Modeling Growth
Mechanistic Models: Compartment Models in Individual and Population Analysis

