Trabecular bone remodelling simulation considering osteocytic response to fluid-induced shear stress

Author:

Adachi Taiji12,Kameo Yoshitaka12,Hojo Masaki1

Affiliation:

1. Department of Mechanical Engineering and Science, Kyoto University, Yoshida-hommachi, Sakyo, Kyoto 606-8501, Japan

2. Computational Cell Biomechanics Team, VCAD System Research Program, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan

Abstract

In bone functional adaptation by remodelling, osteocytes in the lacuno-canalicular system are believed to play important roles in the mechanosensory system. Under dynamic loading, bone matrix deformation generates an interstitial fluid flow in the lacuno-canalicular system; this flow induces shear stress on the osteocytic process membrane that is known to stimulate the osteocytes. In this sense, the osteocytes behave as mechanosensors and deliver mechanical information to neighbouring cells through the intercellular communication network. In this study, bone remodelling is assumed to be regulated by the mechanical signals collected by the osteocytes. From the viewpoint of multi-scale biomechanics, we propose a mathematical model of trabecular bone remodelling that takes into account the osteocytic mechanosensory network system. Based on this model, a computational simulation of trabecular bone remodelling was conducted for a single trabecula under cyclic uniaxial loading, demonstrating functional adaptation to the applied mechanical loading as a load-bearing construct.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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