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Comparison of spatial resolutions of parallel beamforming and diffraction tomography in high frame rate echocardiography

机译:高帧率超声心动图中平行波束形成和衍射层析成像的空间分辨率比较

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摘要

Echocardiography is a predominant modality for diagnosis of the heart by noninvasive and real-time observation of its cross-sectional images. In addition, it has been recently shown that measurement of the rapid transition of myocardial contraction/relaxation and propagation of heart-wall vibration would be useful for assessment of myocardial function and viscoelasticity. However, such measurements require a higher frame rate of several hundred hertz. Therefore, we realized high-frame-rate echocardiography using parallel beamforming with unfocused transmit beams. On the other hand, there is another imaging method, namely, diffraction tomography. It has been reported that diffraction tomography realizes high spatial resolution. One of the problems of parallel beamforming with unfocused transmit beams is the degradation of spatial resolution; diffraction tomography may alleviate this problem. In the present study, diffraction tomography was applied to high-frame-rate echocardiography with unfocused transmit beams, and spatial resolutions realized by diffraction tomography and parallel beamforming were compared. Diffraction tomography showed a spatial resolution (1.16mm) similar to that (1.18mm) of parallel beamforming in a relatively near region (44mm in range distance). In a deeper region (84 mm), diffraction tomography realized better spatial resolution (1.90 mm) than that (2.27 mm) of parallel beamforming. However, still better spatial resolution (1.57 mm) was realized by parallel beamforming when it was used with a phase coherence factor. The use of the phase coherence factor is not computationally intensive, and parallel beamforming with a phase coherence factor was shown to be feasible in high-frame-rate echocardiography for the improvement of spatial resolution.
机译:超声心动图是通过无创和实时观察其横截面图像来诊断心脏的一种主要方式。另外,最近显示出,心肌收缩/松弛的快速转变和心壁振动的传播的测量将对评估心肌功能和粘弹性有用。但是,这样的测量需要更高的几百赫兹的帧速率。因此,我们实现了使用未聚焦发射束的平行束形成的高帧速超声心动图。另一方面,存在另一种成像方法,即衍射断层摄影。据报道,衍射断层摄影术实现了高空间分辨率。使用未聚焦的发射光束进行平行​​波束成形的问题之一是空间分辨率的降低。衍射层析成像可以减轻这个问题。在本研究中,将衍射层析成像技术应用于未聚焦发射束的高帧速超声心动图,并比较了通过衍射层析成像和平行波束形成实现的空间分辨率。衍射层析成像在相对较近的区域(距离范围为44mm)中显示出与平行波束形成相似的空间分辨率(1.16mm)(1.16mm)。在更深的区域(84毫米),衍射层析成像比平行波束形成的空间分辨率(2.27毫米)具有更好的空间分辨率(1.90毫米)。但是,当将其与相位相干因子一起使用时,通过平行波束成形仍可获得更好的空间分辨率(1.57 mm)。相位相干因子的使用在计算上不是很费力,并且具有相位相干因子的并行波束成形在高帧速超声心动图中被证明是可行的,以提高空间分辨率。

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  • 来源
    《Japanese journal of applied physics》 |2014年第7s期|07KF02.1-07KF02.3|共3页
  • 作者单位

    Graduate School of Biomedical Engineering, Tohoku University, Sendai 980-8579, Japan,Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan;

    Graduate School of Biomedical Engineering, Tohoku University, Sendai 980-8579, Japan,Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan;

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