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用于心脏血流速度矢量成像的二维相关函数的时间平均法。

Temporal averaging of two-dimensional correlation functions for velocity vector imaging of cardiac blood flow.

作者信息

Takahashi Hiroki, Hasegawa Hideyuki, Kanai Hiroshi

机构信息

Graduate School of Biomedical Engineering, Tohoku University, 6-6-05 Aramaki-aza-Aoba, Aoba-ku, Sendai, Miyagi, 980-8579, Japan.

Graduate School of Engineering, Tohoku University, 6-6-05 Aramaki-aza-Aoba, Aoba-ku, Sendai, Miyagi, 980-8579, Japan.

出版信息

J Med Ultrason (2001). 2015 Jul;42(3):323-30. doi: 10.1007/s10396-015-0620-x. Epub 2015 Mar 17.

Abstract

PURPOSE

Ultrasonic imaging of blood flow in the cardiac lumen is a very useful tool to evaluate the pumping function of the human heart. The speckle tracking technique makes it possible to estimate the blood velocity vector. However, a stable estimation of the velocity vector of blood flow is difficult because signal-to-noise ratios of echoes from tiny blood particles are low. In this study, the speckle tracking technique with averaging of multiple two-dimensional correlation functions was employed for stable estimation of the blood velocity vector.

METHODS

Multiple two-dimensional correlation functions can be averaged during a very short period by using the echo data acquired by high-frame-rate echocardiography with diverging beam transmission. A steady flow experiment using blood-mimicking fluid (mean fluid velocity 0.2 m/s, flow angle 56° from the transducer surface) was implemented to investigate the effect of the averaging of two-dimensional correlation functions at a frame rate of 6024 Hz.

RESULTS

First, to examine the averaging duration required for stable estimation of the flow velocity vector, the accuracies of vector estimates were evaluated at different durations for averaging of two-dimensional correlation functions in the steady flow measurement. It was found that the proposed averaging process with an averaging duration of over 8 frames could reduce the directional error in vector estimation to almost half that of the conventional speckle tracking technique. In subsequent experiments, the averaging duration was set at 12 frames corresponding to 2 ms. Measurements of steady flow at higher velocities were further implemented. The steady flow measurements with higher flow velocities of 0.4 and 0.6 m/s were simulated by changing the frame interval of the echo data at a flow velocity of 0.2 m/s. Although the averaging duration was a mere 2 ms, directional errors at mean flow velocities of 0.2, 0.4, and 0.6 m/s were reduced significantly. In an in vivo experiment of the healthy human heart, to produce a fine B-mode image, the diverging wave transmissions with different steered angles for compounding were interleaved in the transmission sequence. From the in vivo experimental result, the blood velocity vector of the left ventricular cavity showed the flow getting into/out of the cavity in ejection and early diastolic phases. Furthermore, estimated flow directions revealed rotating flow in the cavity in mid-diastole.

CONCLUSION

Our proposed method has the feasibility to visualize the vortex flow by velocity vector mapping without a contrast agent.

摘要

目的

心脏腔室内血流的超声成像对于评估人体心脏的泵血功能是一种非常有用的工具。散斑跟踪技术使得估计血流速度矢量成为可能。然而,由于微小血液颗粒回声的信噪比很低,稳定地估计血流速度矢量很困难。在本研究中,采用对多个二维相关函数进行平均的散斑跟踪技术来稳定地估计血流速度矢量。

方法

通过使用发散束传输的高帧率超声心动图获取的回波数据,可以在非常短的时间内对多个二维相关函数进行平均。实施了一项使用仿血流体的稳流实验(平均流体速度0.2 m/s,与换能器表面的流动角度为56°),以研究在6024 Hz的帧率下二维相关函数平均的效果。

结果

首先,为了检查稳定估计流速矢量所需的平均持续时间,在稳流测量中,在不同的二维相关函数平均持续时间下评估了矢量估计的准确性。结果发现,所提出的平均持续时间超过8帧的平均过程可以将矢量估计中的方向误差降低到传统散斑跟踪技术的几乎一半。在随后的实验中,平均持续时间设置为对应于2 ms的12帧。进一步实施了更高流速下的稳流测量。通过在0.2 m/s的流速下改变回波数据的帧间隔,模拟了0.4和0.6 m/s的更高流速下的稳流测量。尽管平均持续时间仅为2 ms,但在0.2、0.4和0.6 m/s的平均流速下方向误差显著降低。在健康人体心脏的体内实验中,为了生成高质量的B模式图像,在发射序列中交错了具有不同转向角度的发散波传输以进行复合。从体内实验结果来看,左心室腔的血流速度矢量显示在射血期和舒张早期血流进入/流出腔室。此外,估计的血流方向显示在舒张中期腔室内存在旋转血流。

结论

我们提出的方法具有在不使用造影剂的情况下通过速度矢量映射可视化涡流的可行性。

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