Yoon Young June, Cowin Stephen C
Department of Mechanical Engineering, Graduate School and City College of New York/CUNY, New York, NY 10031, USA.
Biomech Model Mechanobiol. 2008 Feb;7(1):13-26. doi: 10.1007/s10237-006-0071-9. Epub 2007 Feb 13.
The anisotropic poroelastic constants of an osteon are estimated by micromechanical analysis. Two extreme cases are examined, the drained and the undrained elastic constants. The drained elastic constants are the porous medium's effective elastic constants when the fluid in the pores easily escapes and the pore fluid can sustain no pore pressure. The undrained elastic constants are the porous medium's effective elastic constants when the medium is fully saturated with pore fluid and the fluid cannot escape. The drained and undrained elastic constants at the lacunar and canalicular porosity tissue levels are estimated by using an effective moduli model consisting of the periodic distribution of ellipsoidal cavities. These estimated anisotropic poroelastic constants provide a database for the development of an accurate anisotropic poroelastic model of an osteon.
通过微观力学分析估算骨单位的各向异性多孔弹性常数。研究了两种极端情况,即排水弹性常数和不排水弹性常数。排水弹性常数是指孔隙中的流体容易逸出且孔隙流体无法承受孔隙压力时多孔介质的有效弹性常数。不排水弹性常数是指介质完全被孔隙流体饱和且流体无法逸出时多孔介质的有效弹性常数。通过使用由椭圆形空洞的周期性分布组成的有效模量模型,估算了腔隙和小管孔隙度组织水平的排水和不排水弹性常数。这些估算的各向异性多孔弹性常数为开发精确的骨单位各向异性多孔弹性模型提供了一个数据库。