4D in vivo ultrafast ultrasound imaging using a row-column addressed matrix and coherently-compounded orthogonal plane waves

被引:59
|
作者
Flesch, M. [1 ,2 ]
Pernot, M. [1 ]
Provost, J. [1 ]
Ferin, G. [2 ]
Nguyen-Dinh, A. [2 ]
Tanter, M. [1 ]
Deffieux, T. [1 ]
机构
[1] Paris VII, ESPCI Paris, Inst Langevin, CNRS UMR7587,INSERM U979,PSL Res Univ, Paris, France
[2] Vermon, Tours, France
来源
PHYSICS IN MEDICINE AND BIOLOGY | 2017年 / 62卷 / 11期
关键词
volumetric imaging; doppler imaging; ultrafast imaging; ultrasound imaging; plane wave imaging; matrix transducer; row-column addressed matrix transducer; 2-D ARRAY; TRANSDUCER; DOPPLER;
D O I
10.1088/1361-6560/aa63d9
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
4D ultrafast ultrasound imaging was recently shown using a 2D matrix (i.e. fully populated) connected to a 1024-channel ultrafast ultrasound scanner. In this study, we investigate the row-column addressing (RCA) matrix approach, which allows a reduction of independent channels from N x N to N + N, with a dedicated beamforming strategy for ultrafast ultrasound imaging based on the coherent compounding of orthogonal plane wave (OPW). OPW is based on coherent compounding of plane wave transmissions in one direction with receive beamforming along the orthogonal direction and its orthogonal companion sequence. Such coherent recombination of complementary orthogonal sequences leads to the virtual transmit focusing in both directions which results into a final isotropic point spread function (PSF). In this study, a 32 x 32 2D matrix array probe (1024 channels), centered at 5 MHz was considered. An RCA array, of same footprint with 32 + 32 elements (64 channels), was emulated by summing the elements either along a line or a column in software prior to beamforming. This approach allowed for the direct comparison of the 32 + 32 RCA scheme to the optimal fully sampled 32 x 32 2D matrix configuration, which served as the gold standard. This approach was first studied through PSF simulations and then validated experimentally on a phantom consisting of anechoic cysts and echogenic wires. The contrast-to-noise ratio and the lateral resolution of the RCA approach were found to be approximately equal to half (in decibel) and twice the values, respectively, obtained when using the 2D matrix approach. Results in a Doppler phantom and the human humeral artery in vivo confirmed that ultrafast Doppler imaging can be achieved with reduced performances when compared against the equivalent 2D matrix. Volumetric anatomic Doppler rendering and voxel-based pulsed Doppler quantification are presented as well. OPW compound imaging using emulated RCA matrix can achieve a power Doppler with sufficient contrast to recover the vein shape and provides an accurate Doppler spectrum.
引用
收藏
页码:4571 / 4588
页数:18
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