Probe Oscillation Shear Elastography (PROSE): A High Frame-Rate Method for Two-Dimensional Ultrasound Shear Wave Elastography

被引:35
作者
Mellema, Daniel C. [1 ,2 ]
Song, Pengfei [2 ]
Kinnick, Randall R. [3 ]
Urban, Matthew W. [2 ]
Greenleaf, James F. [3 ]
Manduca, Armando [3 ]
Chen, Shigao [2 ]
机构
[1] Mayo Clin, Coll Med, Mayo Grad Sch, Rochester, MN 55905 USA
[2] Mayo Clin, Coll Med, Dept Radiol, Rochester, MN 55905 USA
[3] Mayo Clin, Coll Med, Dept Physiol & Biomed Engn, Rochester, MN 55905 USA
基金
美国国家卫生研究院;
关键词
Inclusion; mechanical vibration; shear wave; ultrasound elastography; MAGNETIC-RESONANCE ELASTOGRAPHY; ACOUSTIC RADIATION FORCE; TRANSIENT ELASTOGRAPHY; TISSUE ELASTICITY; BIOLOGICAL TISSUES; SOFT-TISSUES; IN-VIVO; MODULUS; TECHNOLOGY; VIBRATION;
D O I
10.1109/TMI.2016.2550007
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Ultrasound shear wave elastography (SWE) utilizes the propagation of induced shear waves to characterize the shear modulus of soft tissue. Many methods rely on an acoustic radiation force (ARF) "push beam" to generate shear waves. However, specialized hardware is required to generate the push beams, and the thermal stress that is placed upon the ultrasound system, transducer, and tissue by the push beams currently limits the frame-rate to about 1 Hz. These constraints have limited the implementation of ARF to high-end clinical systems. This paper presents Probe Oscillation Shear Elastography (PROSE) as an alternative method to measure tissue elasticity. PROSE generates shear waves using a harmonic mechanical vibration of an ultrasound transducer, while simultaneously detecting motion with the same transducer under pulse-echo mode. Motion of the transducer during detection produces a "strain-like" compression artifact that is coupled with the observed shear waves. A novel symmetric sampling scheme is proposed such that pulse-echo detection events are acquired when the ultrasound transducer returns to the same physical position, allowing the shear waves to be decoupled from the compression artifact. Full field-of-view (FOV) two-dimensional (2D) shear wave speed images were obtained by applying a local frequency estimation (LFE) technique, capable of generating a 2D map from a single frame of shear wave motion. The shear wave imaging frame rate of PROSE is comparable to the vibration frequency, which can be an order of magnitude higher than ARF based techniques. PROSE was able to produce smooth and accurate shear wave images from three homogeneous phantoms with different moduli, with an effective frame rate of 300 Hz. An inclusion phantom study showed that increased vibration frequencies improved the accuracy of inclusion imaging, and allowed targets as small as 6.5 mm to be resolved with good contrast (contrast-to-noise ratio >= 19 dB) between the target and background.
引用
收藏
页码:2098 / 2106
页数:9
相关论文
共 41 条
[1]  
[Anonymous], 2014, LOGIQ E9 SHEAR WAVE
[2]   Breast Lesions: Quantitative Elastography with Supersonic Shear Imaging-Preliminary Results [J].
Athanasiou, Alexandra ;
Tardivon, Anne ;
Tanter, Mickael ;
Sigal-Zafrani, Brigitte ;
Bercoff, Jeremy ;
Eux, Thomas Deffi ;
Gennisson, Jean-Luc ;
Fink, Mathias ;
Neuenschwander, Sylvia .
RADIOLOGY, 2010, 256 (01) :297-303
[3]   EFSUMB Guidelines and Recommendations on the Clinical Use of Ultrasound Elastography. Part 1: Basic Principles and Technology [J].
Bamber, J. ;
Cosgrove, D. ;
Dietrich, C. F. ;
Fromageau, J. ;
Bojunga, J. ;
Calliada, F. ;
Cantisani, V. ;
Correas, J. -M. ;
D'Onofrio, M. ;
Drakonaki, E. E. ;
Fink, M. ;
Friedrich-Rust, M. ;
Gilja, O. H. ;
Havre, R. F. ;
Jenssen, C. ;
Klauser, A. S. ;
Ohlinger, R. ;
Saftoiu, A. ;
Schaefer, F. ;
Sporea, I. ;
Piscaglia, F. .
ULTRASCHALL IN DER MEDIZIN, 2013, 34 (02) :169-184
[4]   A FILTER BANK FOR THE DIRECTIONAL DECOMPOSITION OF IMAGES - THEORY AND DESIGN [J].
BAMBERGER, RH ;
SMITH, MJT .
IEEE TRANSACTIONS ON SIGNAL PROCESSING, 1992, 40 (04) :882-893
[5]   Effects of Precompression on Elasticity Imaging of the Breast Development of a Clinically Useful Semiquantitative Method of Precompression Assessment [J].
Barr, Richard G. ;
Zhang, Zheng .
JOURNAL OF ULTRASOUND IN MEDICINE, 2012, 31 (06) :895-902
[6]   Supersonic shear imaging: A new technique for soft tissue elasticity mapping [J].
Bercoff, J ;
Tanter, M ;
Fink, M .
IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2004, 51 (04) :396-409
[7]  
Bercoff J., 2008, Shearwave elastography"
[8]   A solution to diffraction biases in sonoelasticity: The acoustic impulse technique [J].
Catheline, S ;
Wu, F ;
Fink, M .
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1999, 105 (05) :2941-2950
[9]   Longitudinal shear wave and transverse dilatational wave in solids [J].
Catheline, S. ;
Benech, N. .
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2015, 137 (02) :EL200-EL205
[10]   Shearwave Dispersion Ultrasound Vibrometry (SDUV) for Measuring Tissue Elasticity and Viscosity [J].
Chen, Shigao ;
Urban, Matthew W. ;
Pislaru, Cristina ;
Kinnick, Randall ;
Zheng, Yi ;
Yao, Aiping ;
Greenleaf, James F. .
IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2009, 56 (01) :55-62