Computational fluid dynamics method for determining the rotational diffusion coefficient of cells

Author:

Ma Hui1ORCID,Wereley Steven T.2ORCID,Linnes Jacqueline C.1ORCID,Kinzer-Ursem Tamara L.1ORCID

Affiliation:

1. Weldon School of Biomedical Engineering, Purdue University 1 , West Lafayette, Indiana 47907, USA

2. Department of Mechanical Engineering and Birck Nanotechnology Center, Purdue University 2 , West Lafayette, Indiana 47907, USA

Abstract

This work presents a straightforward computational method to estimate the rotational diffusion coefficient (Dr) of cells and particles of various sizes using the continuum fluid mechanics theory. We calculate the torque (Γ) for cells and particles immersed in fluids to find the mobility coefficient μ and then obtain the Dr by substituting Γ in the Einstein relation. Geometries are constructed using triangular mesh, and the model is solved with computational fluid dynamics techniques. This method is less intensive and more efficient than the widely used models. We simulate eight different particle geometries and compare the results with previous literature.

Funder

Division of Intramural Research

National Science Foundation

Gordon and Betty Moore Foundation

Publisher

AIP Publishing

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