Effects of the microcrack's shape, size and direction on the poroelastic behaviors of a single osteon: a finite element study

Journal Title: Acta of Bioengineering and Biomechanics - Year 2016, Vol 18, Issue 1

Abstract

Purpose: In this work, a finite element study is proposed by using the Comsol Multiphysics software to evaluate the effects of microcrack's shape, size and direction on the poroelastic behaviors of a single osteon. Methods: This finite element model is established by using the Comsol Multiphysics software,and we just focus on the comparison of the influences of those microcrack's geometric parameters on the osteonal fluid pressure and velocity. Results: The results show: (1) microcracks in the osteon wall can induce a release of the fluid pressure, but enlarge the velocity in this region. (2) equalarea microcrack with ellipsoid-like shape produced a larger fluid pressure and velocity fields in the osteon than that of rectangular shaped. (3) in the elliptic microcracks, the longer of the length (major semi-axis) induce a smaller fluid pressure and velocity amplitudes, whereas the width (minor axis) has little effect. (4) the direction of the microcracks (major axial direction) have a limited influence area around about 1/15 of the osteon cross-sectional area. Conclusions: This model permits the linking of the external loads and microcracks to the osteonal fluid pressure and velocity,which can be used for other purpose associate microcracks with the mechanotransduction and bone remodeling.

Authors and Affiliations

Keywords

Related Articles

Dynamic loads indicators for take-off – landing sequence in blocks and attacks of elite female volleyball players

Purpose: Dynamic loads during landings of determined by the ground reaction forces (GRFs) may elaborate internal loads and increase the risk of overload knee injuries as the result of performing volleyball jumps many tim...

Mechanical behaviour of knit synthetic mesh used in hernia surgery

Purpose: There is a discussion in literature concerning mechanical properties and modelling of surgical meshes. An important feature of elastic modulus dependency on load history is taken into account in this paper, as i...

The novel method to calculate mechanical properties of cancer cells based on atomic force microscopy

Purpose: Mechanical properties, as the inherent characteristics of cells, play a critical role in many essential physiological processes, including cell differentiation, migration, and growth. The mechanical properties o...

Measurements of electrical impedance of biomedical objects

Purpose: Some basic problems related to the measurements of electrical impedance of biological objects have been presented in this paper. Particularly problems arising from impedance occurring at the sensor - tissue inte...

Toes function biomechanical investigation through external manipulation integrating analysis

Purpose: This study was aimed to investigate the function of toes while running through comparing bound toes by external-manipulation with natural separate toes by evaluating kinematics and plantar pressure analysis. Met...

Download PDF file
  • EP ID EP206805
  • DOI 10.5277/ABB-00306-2015-03
  • Views 83
  • Downloads 0

How To Cite

(2016). Effects of the microcrack's shape, size and direction on the poroelastic behaviors of a single osteon: a finite element study. Acta of Bioengineering and Biomechanics, 18(1), -. https://europub.co.uk/articles/-A-206805