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Experimental evaluation of ultrasound higher-order harmonic imaging with Filtered-Delay Multiply And Sum (F-DMAS) non-linear beamforming

机译:超声高阶谐波成像与滤波延迟倍增和总和(F-DMA)非线性波束形成的实验评价

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Tissue Harmonic Imaging (THI) mode is currently one of the preferred choices by the clinicians for its ability to provide enhanced ultrasound images, thanks to the use of the second harmonic component of backscattered echoes. This paper aims at investigating whether the combination of THI with Filtered-Delay Multiply And Sum (F-DMAS) beamforming can provide further improvements in image quality. F-DMAS is a new non-linear beamformer, which, similarly to THI, is based on the use of the second harmonics of beamformed signals and is known to increase image contrast resolution and noise rejection. Thus, we have first compared the images obtained by using F-DMAS and the standard Delay And Sum (DAS) beamformers when only the second harmonics of the received signals was selected. Moreover, possible improvements brought about by other harmonic components generated by the combined use of the fundamental plus second harmonics and F-DMAS beamforming have been explored. Experimental results demonstrate that, as compared to standard harmonic imaging with DAS, THI and F-DMAS can be joined to improve the -20 dB lateral resolution up to 1 mm, the contrast ratio up to 12 dB on a cyst-phantom and up to 9 dB on in vivo images. (C) 2018 Elsevier B.V. All rights reserved.
机译:组织谐波成像(THI)模式目前是临床医生的首选选择之一,因为使用反向散射回声的第二次谐波分量的使用来提供增强的超声图像的能力。本文旨在研究与过滤延迟乘法和总和(F-DMAS)波束成形的THI的组合是否可以进一步改进图像质量。 F-DMA是一种新的非线性波束形成器,类似于与THI类似,基于波束形成信号的第二谐波的使用,并且已知增加图像对比度分辨率和噪声抑制。因此,我们首先比较了通过使用F-DMA和标准延迟和总和(DAS)波束形成器而获得的图像,当仅选择所接收信号的第二谐波时获得的图像。此外,已经探讨了由组合使用基础加第二谐波和F-DMA波束形成产生的其他谐波分量所带来的可能改进。实验结果表明,与DAS的标准谐波成像相比,THI和F-DMMS可以加入至1mm的-20dB横向分辨率,对比度为12 dB,对囊体 - 幻像和最高9 dB在体内图像中。 (c)2018 Elsevier B.v.保留所有权利。

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