Franck Vernerey
Professor • Biomedical, Mechanics of Materials

Office Location: ECME 265
Lab Location: ECME 1B64

Research Interests

Mechanics of soft matter, computational multiscale modeling, cell/colloid mechanics, tissue growth and morphogenesis

A major focus of research in the Soft Matter Mechanics group is to uncover the fundamental rules that govern the physical and mechanical behavior of dynamic networks in nature and apply these funding to the development of active and smart matter.ÌýWe are specifically interested in the ways by which small physical networks (from the molecular to the millimeterÌýsize) can mediate internal interactions in order to display an intelligent emerging response despite the lack of a centralized system.ÌýWe are interested in three types of networks:

  1. RandomÌýdynamic networks, such as those made by polymer chains in hydrogels and supramolecular polymers
  2. Architectured dynamics networks, such as those seen in the structure of biopolymers (plants and fungi) or on the scaled-skin of fish and reptiles and
  3. Swarming networks, such as those observed in fire-ant and honey-bee aggregations, or clusters of cells.Ìý

Our approach is anchored in the principles of statistical mechanics and computational modeling, both of which are necessary to bridge the gap between the behavior of individuals nodesÌý(ant, bees, molecules)ÌýinÌýtheÌýnetwork and emergingÌýphysical responses (swarm/material adaptation, self-healing, motion, targeting).ÌýOur main objective isÌýto propose alternative theoretical formulations that can extract the small scale physical principles that govern these networks and clearly identify their effects at the macroscale. If possible, we attempt to use these findings to create new intelligentÌýsoft matter in the lab.Ìý

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