Trabecular bone has been previously recognized as time-dependent (viscoelastic) material, but the relationships of its viscoelastic behaviour with bone volume fraction (BV/TV) have not been investigated so far. Therefore, the aim of the present study was to quantify the time-dependent viscoelastic behaviour of trabecular bone and relate it to BV/TV. Uniaxial compressive creep experiments were performed on cylindrical bovine trabecular bone samples ([Formula: see text]) at loads corresponding to physiological strain level of 2000Â [Formula: see text]. We assumed that the bone behaves in a linear viscoelastic manner at this low strain level and the corresponding linear viscoelastic parameters were estimated by fitting a generalized Kelvin-Voigt rheological model to the experimental creep strain response. Strong and significant power law relationships ([Formula: see text]) were found between time-dependent creep compliance function and BV/TV of the bone. These BV/TV-based material properties can be used in finite element models involving trabecular bone to predict time-dependent response. For users' convenience, the creep compliance functions were also converted to relaxation functions by using numerical interconversion methods and similar power law relationships were reported between time-dependent relaxation modulus function and BV/TV.
Linear viscoelasticity - bone volume fraction relationships of bovine trabecular bone.
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作者:Manda Krishnagoud, Xie Shuqiao, Wallace Robert J, Levrero-Florencio Francesc, Pankaj Pankaj
| 期刊: | Biomechanics and Modeling in Mechanobiology | 影响因子: | 2.700 |
| 时间: | 2016 | 起止号: | 2016 Dec;15(6):1631-1640 |
| doi: | 10.1007/s10237-016-0787-0 | ||
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