activity
20242026
collaborators

6 papers

physics.bio-ph2026

Deep learning-enhanced Lagrangian 3D Tracking of motile microorganisms

Thierry Darnige, Daniel Midtvedt, Renaud Baillou +5

How microorganisms respond to and interact with their environment can vary significantly from individual to individual, which can have important microbiological and ecological impl…

cond-mat.soft2025

Self-organization, Memory and Learning: From Driven Disordered Systems to Living Matter

Muhittin Mungan, Eric Clement, Damien Vandembroucq +1

Disordered systems subject to a fluctuating environment can self-organize into a complex history-dependent response, retaining a memory of the driving. In sheared amorphous solids,…

cond-mat.soft2025

Bacteria collective motion is scale-free

Benjamin Perez-Estay, Vincent Martinez, Carine Douarche +7

Suspensions of swimming bacteria interact hydrodynamically over long ranges, organizing themselves into collective states that drive large-scale chaotic flows, often referred to as…

physics.bio-ph2025

Confinement controls bacterial spreading at all scales

Renaud Baillou, Marta Pedrosa Garcia-Moreno, Quentin Guigue +5

Navigation of microorganisms is controlled by internal processes ultimately sensitive to mechanical or chemical signaling encountered along the path. In many natural environments,…

cond-mat.soft2025

Active bacterial baths in droplets

Cristian Villalobos-Concha, Zhengyang Liu, Gabriel Ramos +6

Suspensions of self-propelled objects represent a novel paradigm in colloidal science. In such active baths traditional concepts, such as Brownian motion, fluctuation-dissipation r…

cond-mat.soft2024

The 2024 Motile Active Matter Roadmap

Gerhard Gompper, Howard A. Stone, Christina Kurzthaler +29

Activity and autonomous motion are fundamental aspects of many living and engineering systems. Here, the scale of biological agents covers a wide range, from nanomotors, cytoskelet…