4.4 Article

Correlation of the mechanical and structural properties of trabecular bone assessed by wave propagation and imaging methods

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SAGE PUBLICATIONS LTD
DOI: 10.1177/09544062221146927

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Cancelous bone; microstructure; mechanical properties; bone quality; wave propagation; ultrasound; elastography

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This study aimed to assess the correlation of mechanical and structural properties of trabecular bone in different regions and directions, and proposed a non-invasive approach for the assessment of trabecular bone quality. The study used Rayleigh wave propagation tests and CT-scan imaging to evaluate two bovine femur trabecular bone specimens. The results showed significant heterogeneity and anisotropy in the elastic modulus of bone specimens in different regions and directions. The study also established a correlation between mechanical and structural properties and developed a semi-empirical relation for predicting the elastic modulus of trabecular bone using imaging or structural parameters.
This study aimed to assess the correlation of the location- and direction-dependent mechanical and structural properties of trabecular bone using the wave propagation and imaging methods and to propose a non-invasive approach for the assessment of the quality of trabecular bone. Two bovine femur trabecular bone specimens were prepared and tested using the Rayleigh wave propagation tests and CT-scan imaging. The elastic modulus of the specimens was estimated in different regions of interest (ROIs) and wave propagation directions by the solution of the presented Rayleigh wave propagation model. The structural parameters of the specimens were also obtained via the processing of CT-scan images for all of the tested ROIs and directions. The estimated elastic modulus was in the range between 321and 1322 MPa for different ROIs and directions, showing significant heterogeneity and anisotropy of the bone specimens. The Pearson correlation and linear regression analyses were carried out between the obtained mechanical and structural properties, which revealed that the elastic modulus decreased with the trabecular separation and increased with the trabecular thickness and bone volume fraction. A semi-empirical relation was developed to obtain the elastic modulus of trabecular bone using the structural parameters obtained from imaging or vice versa.

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