Influence of catheter position on estimated strain in intravascular elastography

被引:36
作者
de Korte, CL
Céspedes, EI
van der Steen, AFW
机构
[1] Erasmus Univ, Ctr Thorax, NL-3000 DR Rotterdam, Netherlands
[2] EndoSon Corp, Rancho Cordova, CA 95670 USA
关键词
D O I
10.1109/58.764848
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
In elastography, an erroneous strain estimate is obtained when the radial strain and the probing ultrasound beam are not properly aligned: the "strain projection artifact". In practice, an angle between the strain and the ultrasound beam will be present in most of the cases due to inhomogeneities or nonuniform compression. In this study, a theoretical function describing the strain projection artifact is derived as a function of the angle between the radial strain and the ultrasound beam. Two main factors for an angle between strain and ultrasound beam in intravascular elastographic experiments are eccentricity and tilt of the transducer. The theoretical functions describing these errors are corroborated with strain estimates from an experiment with a circular, homogeneous gel-based vessel phantom. Comparison between the theoretical functions and the experimental results reveals that the strain projection artifact is well described by the theoretical findings. As a result, the experimental data can be corrected for this artifact. The corrected elastograms reveal that correct strain estimates are obtained when the eccentricity of the intravascular catheter is less than 63%. An "off-the-wall" device may be required to advance intravascular elastography to in vivo implementation.
引用
收藏
页码:616 / 625
页数:10
相关论文
共 34 条
[1]   Impact of plaque morphology and composition on the mechanisms of lumen enlargement using intracoronary ultrasound and quantitative angiography after balloon angioplasty [J].
Baptista, J ;
diMario, C ;
Ozaki, Y ;
Escaned, J ;
Gil, R ;
deFeyter, P ;
Roelandt, JRTC ;
Serruys, PW .
AMERICAN JOURNAL OF CARDIOLOGY, 1996, 77 (02) :115-121
[2]   Deformation models and correlation analysis in elastography [J].
Bilgen, M ;
Insana, MF .
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1996, 99 (05) :3212-3224
[3]  
CESPEDES EI, 1993, ULTRASONIC IMAGING, V17, P73
[4]  
CESPEDES EI, 1997, P IEEE ULTR S TOR CA, P1079
[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]  
Chae J S, 1992, J Am Soc Echocardiogr, V5, P577
[7]   DISTRIBUTION OF CIRCUMFERENTIAL STRESS IN RUPTURED AND STABLE ATHEROSCLEROTIC LESIONS - A STRUCTURAL-ANALYSIS WITH HISTOPATHOLOGICAL CORRELATION [J].
CHENG, GC ;
LOREE, HM ;
KAMM, RD ;
FISHBEIN, MC ;
LEE, RT .
CIRCULATION, 1993, 87 (04) :1179-1187
[8]  
de Korte C L, 1998, Eur J Ultrasound, V7, P219, DOI 10.1016/S0929-8266(98)00043-3
[9]   Intravascular ultrasound elastography in human arteries: Initial experience in vitro [J].
de Korte, CL ;
van der Steen, AFW ;
Cespedes, EI ;
Pasterkamp, G .
ULTRASOUND IN MEDICINE AND BIOLOGY, 1998, 24 (03) :401-408
[10]   Elastic and acoustic properties of vessel mimicking material for elasticity imaging [J].
deKorte, CL ;
Cespedes, EI ;
vanderSteen, AFW ;
Norder, B ;
Nijenhuis, KT .
ULTRASONIC IMAGING, 1997, 19 (02) :112-126