A multiscale mathematical model of cell dynamics during neurogenesis in the mouse cerebral cortex

Image credit: Unsplash

Abstract

Neurogenesis in the murine cerebral cortex involves the coordinated divisions of two main types of progenitor cells, whose numbers, division modes and cell cycle durations set up the final neuronal output. To understand the respective roles of these factors in the neurogenesis process, we combine experimental in vivo studies with mathematical modeling and numerical simulations of the dynamics of neural progenitor cells. A special focus is put on the population of intermediate progenitors (IPs), a transit amplifying progenitor type critically involved in the size of the final neuron pool.

Publication
BMC Bioinformatics 20(470)
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Marie Postel
Marie Postel
Professor in Applied Mathematics

My research interests include Mathematics applied to Biology, Numerical methods, Optimization.