Blood flow imaging and volume flow quantitation with intravascular ultrasound

被引:63
作者
Li, WG
van der Steen, AFW
Lancee, CT
Cespedes, I
Bom, N
机构
[1] Erasmus Univ, Ctr Thorax Ee 2302, NL-3000 DR Rotterdam, Netherlands
[2] Endoson Corp, Rancho Cordova, CA USA
关键词
intravascular ultrasound; decorrelation-to-velocity estimation; localized velocity assessment; volume flow quantitation; RF signal processing;
D O I
10.1016/S0301-5629(97)00275-5
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
Current intravascular ultrasound techniques produce real-time imaging of a vessel cross-section with a scan plane approximately normal to blood flow. When a cluster of randomly distributed blood particles moves across the ultrasound beam, the received echo signals decorrelate as a function of time. This phenomenon may be used to estimate blood velocities by measuring the decorrelation rate from a sequence of blood scattering signals. A decorrelation-based method for measuring local blood velocity and quantifying volume flow from cross-sectional radio frequency intravascular echo signals was developed. Serial in vitro measurements were performed with a flow phantom to test the principle of the proposed velocity estimation method. An in vivo pig experiment was carried out to study the feasibility of applying this method in clinical settings. Preliminary results of this study indicate that the proposed decorrelation method is able to extract cross-sectional velocity data and volumetric how both in vitro and in vivo. (C) 1998 World Federation for Ultrasound in Medicine & Biology.
引用
收藏
页码:203 / 214
页数:12
相关论文
共 25 条
[1]  
BONNEFOUS O, 1989, IEEE 1989 ULTRASONICS SYMPOSIUM : PROCEEDINGS, VOLS 1 AND 2, P887, DOI 10.1109/ULTSYM.1989.67116
[2]   THEORY OF ULTRASOUND DOPPLER-SPECTRA VELOCIMETRY FOR ARBITRARY BEAM AND FLOW CONFIGURATIONS [J].
CENSOR, D ;
NEWHOUSE, VL ;
VONTZ, T ;
ORTEGA, HV .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1988, 35 (09) :740-751
[3]  
CHOU TM, 1993, AM HEART J, V2, P237
[4]   MEASUREMENT OF SOFT-TISSUE MOTION USING CORRELATION BETWEEN A-SCANS [J].
DICKINSON, RJ ;
HILL, CR .
ULTRASOUND IN MEDICINE AND BIOLOGY, 1982, 8 (03) :263-271
[5]  
DIMARIO C, 1995, AM J CARDIOL, V75, P1177
[6]   Estimation of the angle between ultrasound beam and blood velocity through correlation functions [J].
Dotti, D ;
Lombardi, R .
IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 1996, 43 (05) :864-869
[7]   VALIDATION OF A DOPPLER GUIDE WIRE FOR INTRAVASCULAR MEASUREMENT OF CORONARY-ARTERY FLOW VELOCITY [J].
DOUCETTE, JW ;
CORL, PD ;
PAYNE, HM ;
FLYNN, AE ;
GOTO, M ;
NASSI, M ;
SEGAL, J .
CIRCULATION, 1992, 85 (05) :1899-1911
[8]   MEASUREMENT OF CORONARY AND PERIPHERAL ARTERY FLOW BY INTRAVASCULAR ULTRASOUND AND PULSED DOPPLER VELOCIMETRY [J].
EICHHORN, EJ ;
ALVAREZ, LG ;
JESSEN, ME ;
FASS, SM ;
CHAO, RY ;
HAAGEN, D ;
GRAYBURN, PA .
AMERICAN JOURNAL OF CARDIOLOGY, 1992, 70 (04) :542-545
[9]   ARTIFACTS IN INTRAVASCULAR ULTRASOUND IMAGING - ANALYSES AND IMPLICATIONS [J].
FINET, G ;
MAURINCOMME, E ;
TABIB, A ;
CROWLEY, RJ ;
MAGNIN, I ;
RORIZ, R ;
BEAUNE, J ;
AMIEL, M .
ULTRASOUND IN MEDICINE AND BIOLOGY, 1993, 19 (07) :533-547
[10]   FLOW VELOCITY PROFILE VIA TIME-DOMAIN CORRELATION ERROR ANALYSIS AND COMPUTER-SIMULATION [J].
FOSTER, SG ;
EMBREE, PM ;
OBRIEN, WD .
IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 1990, 37 (03) :164-175