Related Experiment Video
Updated: Feb 4, 2026

Using Informational Connectivity to Measure the Synchronous Emergence of fMRI Multi-voxel Information Across Time
Published on: July 1, 2014
Transitions in synchronization states of model cilia through basal-connection coupling
Yujie Liu1, Rory Claydon2, Marco Polin3,4
1School of Mathematics and Statistics, The University of Melbourne, Parkville, Victoria 3010, Australia.
Abstract:
Despite evidence for a hydrodynamic origin of flagellar synchronization between different eukaryotic cells, recent experiments have shown that in single multi-flagellated organisms, coordination hinges instead on direct basal body connections. The mechanism by which these connections lead to coordination, however, is currently not understood. Here, we focus on the model biflagellate Chlamydomonas reinhardtii, and propose a minimal model for the synchronization of its two flagella as a result of both hydrodynamic and direct mechanical coupling. A spectrum of different types of coordination can be selected, depending on small changes in the stiffness of intracellular couplings. These include prolonged in-phase and anti-phase synchronization, as well as a range of multi-stable states induced by spontaneous symmetry breaking of the system. Linking synchrony to intracellular stiffness could lead to the use of flagellar dynamics as a probe for the mechanical state of the cell.
Related Concept Videos
Simplified Synchronous Machine Model
In this model, each generator is connected to a...
Phase Transitions
Cooperative Allosteric Transitions
Properties of Transition Metals
Phase Transitions: Vaporization and Condensation
Phase Transitions: Sublimation and Deposition

