English

Brownian motion near an elastic cell membrane: A theoretical study

Soft Condensed Matter 2022-10-28 v1 Biological Physics Chemical Physics Fluid Dynamics

Abstract

Elastic confinements are an important component of many biological systems and dictate the transport properties of suspended particles under flow. In this chapter, we review the Brownian motion of a particle moving in the vicinity of a living cell whose membrane is endowed with a resistance towards shear and bending. The analytical calculations proceed through the computation of the frequency-dependent mobility functions and the application of the fluctuation-dissipation theorem. Elastic interfaces endow the system with memory effects that lead to a long-lived anomalous subdiffusive regime of nearby particles. In the steady limit, the diffusional behavior approaches that near a no-slip hard wall. The analytical predictions are validated and supplemented with boundary-integral simulations.

Keywords

Cite

@article{arxiv.1709.04915,
  title  = {Brownian motion near an elastic cell membrane: A theoretical study},
  author = {Abdallah Daddi-Moussa-Ider and Stephan Gekle},
  journal= {arXiv preprint arXiv:1709.04915},
  year   = {2022}
}

Comments

16 pages, 7 figures and 161 references. Contributed chapter to the flowing matter book