In this paper, the authors introduce a hierarchic fractal model to describe bone hereditariness. Indeed, experimental data of stress relaxation or creep functions obtained by compressive/tensile tests have been proved to be fit by power law with real exponent 0<beta<1. The rheological behavior of the material has therefore been obtained, using the Boltzmann–Volterra superposition principle, in terms of real order integrals and derivatives (fractional-order calculus). It is shown that the power laws describing creep/relaxation of bone tissue may be obtained by introducing a fractal description of bone cross-section, and the Hausdorff dimension of the fractal geometry is then related to the exponent of the power law.

Power-law hereditariness of hierarchical fractal bones

Deseri, Luca;Pollaci, Pietro
2013-01-01

Abstract

In this paper, the authors introduce a hierarchic fractal model to describe bone hereditariness. Indeed, experimental data of stress relaxation or creep functions obtained by compressive/tensile tests have been proved to be fit by power law with real exponent 0
2013
Deseri, Luca; M., Di Paola; M., Zingales; Pollaci, Pietro
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/33603
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