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Updated: Jan 14, 2026

Assessment of Dictyostelium discoideum Response to Acute Mechanical Stimulation
Published on: November 9, 2017
Phase-field modeling of Dictyostelium discoideum chemotaxis
Yunsong Zhang1, Herbert Levine2, Yanxiang Zhao3
1Rice University, Department of Physics and Astronomy, and Center for Theoretical Biological Physics, Houston, Texas 77251-1892, USA.
Abstract:
A phase-field approach is proposed to model the chemotaxis of Dictyostelium discoideum. In this framework, motion is controlled by active forces as determined by the Meinhardt model of chemical dynamics which is used to simulate directional sensing during chemotaxis. Then the movement of the cell is achieved by the phase-field dynamics, while the reaction-diffusion equations of the Meinhardt model are solved on an evolving cell boundary. This task requires the extension of the usual phase-field formulation to allow for components that are restricted to the membrane. The coupled system is numerically solved by an efficient spectral method under periodic boundary conditions. Numerical experiments show that our model system can successfully mimic the typically observed pseudopodia patterns during chemotaxis.
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