Ultrasound propagation in trabecular bone: A numerical study of the influence of microcracks

被引:5
作者
Calle, Samuel [1 ]
Moreschi, Helene [1 ]
Renaud, Guillaume [2 ]
Defontaine, Marielle [1 ]
机构
[1] Univ Tours, INSERM, UMR U930, F-37032 Tours, France
[2] Erasmus MC, Thoraxctr, Dept Biomed Engn, NL-3000 CA Rotterdam, Netherlands
关键词
Pseudo-spectral time-domain (PSTD) method; Trabecular bone; Dynamic acoustoelasticity; Microcracks; TIME-DOMAIN METHOD; WAVE PROPAGATION; SIMULATION; EQUATIONS; SCATTERING;
D O I
10.1016/j.ultras.2013.08.003
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
The accumulation of microdamage in trabecular bone tissue is suspected of being a predictive indicator of osteoporosis diagnosis. To quantify this microdamage, the Dynamic AcoustoElastic Testing (DAET) method measures the Time Of Flight (TOF) and amplitude variations of transmitted ultrasound (US) pulses, while the bone sample is submitted to a low frequency sinusoidal hydrostatic pressure (opening/closing of microcracks). However, DAET is both sensitive to viscoelastic properties changes and microcracks density. To verify the microcracks density contribution on DAET results, a numerical approach is proposed. Multliple configurations of microdamaged trabecular bone-tissue-like mesh have been simulated. A 2D pseudo-spectral time domain numerical model was then developed to simulate linear wave propagation in heterogeneous solids. The influence of the microcracks number and orientation on the US TOF was particularly investigated. Results are discussed and compared with experimental data obtained from DAET measurements in trabecular bone samples. (C) 2013 Elsevier B. V. All rights reserved.
引用
收藏
页码:1231 / 1236
页数:6
相关论文
共 24 条
[1]   Simulation of shear wave propagation in a soft medium using a pseudospectral time domain method [J].
Bastard, Cecile ;
Remenieras, Jean-Pierre ;
Calle, Samuel ;
Sandrin, Laurent .
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2009, 126 (04) :2108-2116
[2]  
Batifol C., 2005, IEEE ULTR S
[3]   A PERFECTLY MATCHED LAYER FOR THE ABSORPTION OF ELECTROMAGNETIC-WAVES [J].
BERENGER, JP .
JOURNAL OF COMPUTATIONAL PHYSICS, 1994, 114 (02) :185-200
[4]   Three-dimensional simulation of ultrasound propagation through trabecular bone structures measured by synchrotron microtomography [J].
Bossy, E ;
Padilla, F ;
Peyrin, F ;
Laugier, P .
PHYSICS IN MEDICINE AND BIOLOGY, 2005, 50 (23) :5545-5556
[5]   METHODS FOR ESTIMATION OF SUBSAMPLE TIME DELAYS OF DIGITIZED ECHO SIGNALS [J].
CESPEDES, I ;
HUANG, Y ;
OPHIR, J ;
SPRATT, S .
ULTRASONIC IMAGING, 1995, 17 (02) :142-171
[6]   A 3D PERFECTLY MATCHED MEDIUM FROM MODIFIED MAXWELLS EQUATIONS WITH STRETCHED COORDINATES [J].
CHEW, WC ;
WEEDON, WH .
MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 1994, 7 (13) :599-604
[7]   Modelimg of piezoelectric transducers with combined pseudospectral and finite-difference methods [J].
Filoux, E. ;
Calle, S. ;
Certon, D. ;
Lethiecq, M. ;
Levassort, F. .
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2008, 123 (06) :4165-4173
[8]   THE PSEUDOSPECTRAL METHOD - COMPARISONS WITH FINITE-DIFFERENCES FOR THE ELASTIC WAVE-EQUATION [J].
FORNBERG, B .
GEOPHYSICS, 1987, 52 (04) :483-501
[9]  
Fornberg B., 1994, Acta Numerica, V3, P203, DOI [10.1017/s0962492900002440, DOI 10.1017/S0962492900002440, 10.1017/ s0962492900002440]
[10]   Staggered time integrators for wave equations [J].
Ghrist, M ;
Fornberg, B ;
Driscoll, TA .
SIAM JOURNAL ON NUMERICAL ANALYSIS, 2000, 38 (03) :718-741