The influence of porosity and pore size on the ultrasonic properties of bone investigated using a phantom material

被引:64
作者
Strelitzki, R
Evans, JA
Clarke, AJ
机构
[1] UNIV LEEDS, GEN INFIRM, LEEDS LS1 3EX, W YORKSHIRE, ENGLAND
[2] UNIV LEEDS, CTR BONE & BODY COMPOSIT RES, LEEDS LS1 3EX, W YORKSHIRE, ENGLAND
关键词
attenuation; bone; structure; ultrasound; velocity;
D O I
10.1007/BF01623780
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Ultrasonic propagation in bone has been investigated using the Leeds Ultrasonic Bone Phantom Material. Phantoms were produced with different porosities in the range of 45-83% and pore sizes of 1.3 and 0.6 mm. The phase velocity at 600 kHz was found to follow a second-order polynomial as a function of porosity. Phase velocity values between 1545 and 2211 m s(-1) were measured and found to be largely independent of pore size for a given porosity. The slope of the phase velocity as a function of frequency (dispersion) decreases with increasing porosity. The values obtained from samples having different pore sizes were also similiar. The attenuation coefficient and normalized broadband ultrasonic attenuation (nBUA) reached a maximum at about 50%. The normalized attenuation ranged from 6 to 25 dB cm(-1) over the porosity range available and consistently showed higher values for the larger pore size. Similarly, the nBUA values were found to be between 14 and 53 dB MHz(-1) cm(-1), with the values for the larger pore size being roughly 10 dB MHz(-1) cm(-1) greater than those for the smaller pore size. These findings demonstrate that the Leeds phantom can be used to investigate the effect of structural changes in bone and to aid the understanding of quantitative ultrasound. The results support the assumption that the velocity in trabecular bone is not dependent on pore size but is influenced by the mechanical properties of the bone's constituents and the overall framework, whereas the attenuation and BUA are also influenced by structure.
引用
收藏
页码:370 / 375
页数:6
相关论文
共 26 条
[11]   MEASUREMENTS OF BROAD-BAND ULTRASONIC-ATTENUATION IN THE CALCANEUS IN PREMENOPAUSAL AND POSTMENOPAUSAL WOMEN [J].
HERD, RJM ;
RAMALINGHAM, T ;
RYAN, PJ ;
FOGELMAN, I ;
BLAKE, GM .
OSTEOPOROSIS INTERNATIONAL, 1992, 2 (05) :247-251
[12]  
HODGSKINSON R, 1990, ENG MED, V204, P115
[13]  
Langton C M, 1984, Eng Med, V13, P89, DOI 10.1243/EMED_JOUR_1984_013_022_02
[14]   A CONTACT METHOD FOR THE ASSESSMENT OF ULTRASONIC VELOCITY AND BROAD-BAND ATTENUATION IN CORTICAL AND CANCELLOUS BONE [J].
LANGTON, CM ;
ALI, AV ;
RIGGS, CM ;
EVANS, GP ;
BONFIELD, W .
CLINICAL PHYSICS AND PHYSIOLOGICAL MEASUREMENT, 1990, 11 (03) :243-249
[15]   ACOUSTIC AND DYNAMIC PROPERTIES OF 2-PHASE MEDIA WITH NONSPHERICAL INCLUSIONS [J].
LEWANDOWSKI, J .
ULTRASONICS, 1995, 33 (01) :61-68
[16]   A comparison of time-domain and frequency-domain approaches to ultrasonic velocity measurement in trabecular bone [J].
Nicholson, PHF ;
Lowet, G ;
Langton, CM ;
Dequeker, J ;
VanderPerre, G .
PHYSICS IN MEDICINE AND BIOLOGY, 1996, 41 (11) :2421-2435
[17]   THE DEPENDENCE OF ULTRASONIC PROPERTIES ON ORIENTATION IN HUMAN VERTEBRAL BONE [J].
NICHOLSON, PHF ;
HADDAWAY, MJ ;
DAVIE, MWJ .
PHYSICS IN MEDICINE AND BIOLOGY, 1994, 39 (06) :1013-1024
[18]   GENERAL RELATIONSHIPS BETWEEN ULTRASONIC-ATTENUATION AND DISPERSION [J].
ODONNELL, M ;
JAYNES, ET ;
MILLER, JG .
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1978, 63 (06) :1935-1937
[19]   ON THE DEPENDENCE OF THE ELASTICITY AND STRENGTH OF CANCELLOUS BONE ON APPARENT DENSITY [J].
RICE, JC ;
COWIN, SC ;
BOWMAN, JA .
JOURNAL OF BIOMECHANICS, 1988, 21 (02) :155-168
[20]   The nonlinear transition period of broadband ultrasound attenuation as bone density varies [J].
Serpe, L ;
Rho, JY .
JOURNAL OF BIOMECHANICS, 1996, 29 (07) :963-966