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Investigation of the effects of transducer Parameters on adaptive MV beamformers in medical ultrasound applications

机译:换能器参数对医用超声应用中自适应MV波束形成器影响的研究

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In the recent years, various studies have been performed on adaptive beamforming especially for medical ultrasound imaging. In this paper, at first we applied the adaptive Minimum Variance (MV) beamforming to the simulated data derived from Field II. In contrast to conventional beamforming (DAS), MV adaptive beamforming can significantly improve the imaging resolution while retaining the contrast of the image. Then we combined MV with Coherence Factor (CF), by which the resolution and contrast of the medical ultrasound images are simultaneously increased. We implemented these beamformers in the MATLAB and survey the authenticity of them, then fulfil the beamformers with the Visual Studio codes. Those had the same results but execution times of Visual Studio codes are about 13 times lower than other. The major parameters which affect on the image quality are number of elements, height of elements, and sampling frequency. We investigated the effect of these parameters on the image quality by some simulated examples. The results illustrated that the reduction of the number of elements from M=96 to 24 and sampling frequency from 100MHz to 20MHz will degrade quality of the images. Nevertheless, the results of MV beamformer with M=24 and Fs=20MHz are comparable to DAS with M=96 and Fs=100MHz. We illustrated that if height of elements is equal or greater than 5mm, the off-plane targets have a negligible effect on the image quality but if the height of elements is in the same order of the width the off-plane targets have a significant role on the image quality. It should be taken into consideration in using of planar probs.
机译:近年来,已经对适应性波束形成进行了各种研究,特别是对于医学超声成像。在本文中,首先,我们将波束成形的自适应最小方差(MV)应用于来自Field II的模拟数据。与传统的波束成形(DAS)相反,MV自适应波束形成可以显着提高成像分辨率,同时保持图像的对比度。然后,我们将MV与相干因子(CF)组合,通过该相干因子(CF),通过该尺寸和对比图像的分辨率和对比度同时增加。我们在MATLAB中实现了这些波束形成器并调查了它们的真实性,然后使用Visual Studio代码实现波束形成器。那些具有相同的结果,但Visual Studio代码的执行时间约为其他13倍。影响图像质量的主要参数是元素的数量,元素高度和采样频率。我们通过一些模拟示例调查了这些参数对图像质量的影响。结果表明,从M&#X003D的元素数量的减少; 96到24和从100MHz到20MHz的采样频率会降低图像的质量。然而,MV波束形成器的结果与M= 24和FS= 20MHz与M&#X003D的DAS相当; 96和FS= 100MHz。我们说明了,如果元素的高度相等或大于5mm,则异地面目标对图像质量具有可忽略不计的影响,但如果元素的高度与宽度的相同顺序,则偏离平面目标具有重要作用关于图像质量。使用平面探针应该考虑到它。

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