Title of article :
Dependence of ultrasonic attenuation on bone mass and microstructure in bovine cortical bone
Author/Authors :
Magali Sasso، نويسنده , , Guillaume Haïat، نويسنده , , Yu Yamato، نويسنده , , Salah Naili ، نويسنده , , Mami Matsukawa، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
9
From page :
347
To page :
355
Abstract :
The development of the axial transmission technique now enables in vivo evaluation of cortical bone quality, which plays an important role in bone fragility. Cortical bone is a complex multiscale material, which may be made of different types of microstructure. The interaction between ultrasound and cortical bone remains unclear and most studies have been confined to wave speed analysis. The first aim of this study is to investigate the dependence of the frequency-dependent attenuation on the type of bone microstructure. The second goal is to determine whether broadband ultrasonic attenuation (BUA) is related to volumetric bone mineral density (vBMD) and mass density. Parallelepipedic samples of bovine cortical bone were cut from three specimens and tested in the axial, radial and tangential directions using an ultrasonic transmission device. BUA was evaluated over a 1-MHz wide bandwidth around 4 MHz. In addition, the microstructure of each sample was determined using an optical microscope. BUA values measured in porotic microstructure are significantly higher than in Haversian microstructure. The lowest BUA values are obtained for plexiform microstructure. For all structures, BUA in the axial direction is significantly smaller than in the radial and tangential directions. Moreover, BUA is correlated with both vBMD and density (determination coefficient (R2) equal to 0.44 and 0.65, respectively, in the axial direction). BUA variations can be explained by scattering and viscoelastic mechanisms. This study suggests that BUA measurements have the potential to discriminate among different cortical bone microstructures in addition to providing material properties.
Keywords :
frequency-dependent attenuation , Cortical bone , Ultrasound , QUS techniques , Bone microstructure , BUA
Journal title :
Journal of Biomechanics
Serial Year :
2008
Journal title :
Journal of Biomechanics
Record number :
452899
Link To Document :
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