2021 Days on Diffraction (DD) 2021
DOI: 10.1109/dd52349.2021.9598752
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Accounting for modal excitability and bone porosity in ultrasonometric osteoporosis diagnostics

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Cited by 3 publications
(2 citation statements)
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“…The drilled material is transversely isotropic with the horizontal plane of isotropy , and the velocities and in the table are for the body wave propagation in the horizontal direction. However, the numerical analysis showed a weak effect of accounting for such anisotropy; this was true even when considering factors like material viscosity or detailed layering up to multilayered sandwich-like models with internal bone marrow and external soft tissue, e.g., [ 47 , 48 ]. The wave patterns on the surface primarily depend on the elastic properties of the upper sublayers.…”
Section: Guided Waves In Bone Phantomsmentioning
confidence: 99%
See 1 more Smart Citation
“…The drilled material is transversely isotropic with the horizontal plane of isotropy , and the velocities and in the table are for the body wave propagation in the horizontal direction. However, the numerical analysis showed a weak effect of accounting for such anisotropy; this was true even when considering factors like material viscosity or detailed layering up to multilayered sandwich-like models with internal bone marrow and external soft tissue, e.g., [ 47 , 48 ]. The wave patterns on the surface primarily depend on the elastic properties of the upper sublayers.…”
Section: Guided Waves In Bone Phantomsmentioning
confidence: 99%
“…The foundation of the present studies traces back to bone ultrasonometry research conducted in Riga starting in the 1980s [ 43 , 44 ]. In the 2000s, the research temporarily moved to Artann Laboratories, USA [ 7 , 45 ], and has since resumed in Riga [ 46 ], while the numerical analysis is carried out by the Krasnodar team [ 41 , 47 , 48 ].…”
Section: Introductionmentioning
confidence: 99%