论文标题

使用相干信号的减法,通过角度化合物的平面波成像的光栅叶片减小

Grating lobe reduction in plane wave imaging with angular compounding using subtraction of coherent signals

论文作者

Kou, Zhengchang, Miller, Rita J., Oelze, Michael L.

论文摘要

近年来,具有高框架速率和良好的图像特性,具有角色复合的平面波成像(PWI)在受欢迎程度上越来越受欢迎。但是,临床实践中使用的大多数线性阵列的音高都等于超声波的波长。因此,使用多个传输角度的PWI关注光叶是一个关注的问题。光叶的存在会在图像中产生混乱,并降低观察组织对比度的能力。使用多个角度减少或消除PWI的光裂片的技术将导致图像质量提高。 NULL减法成像(NSI)是一种非线性波束形成技术,已被探索用于改善超声成像的横向分辨率。但是,NSI中使用的暂停方案也消除或大大减少了光裂叶的存在。在涉及模拟组织幻像和体内大鼠肿瘤的模拟和物理实验中评估了使用NSI的成像任务。将使用NSI创建的图像与使用传统延迟和总和(DAS)创建的图像进行了比较,并使用Hann Apodization和使用广义相干因子(GCF)创建的图像。与Hann和GCF的DA相比,观察到NSI大大减少了超声图像中的光裂片的存在,同时保持了图像中的空间分辨率和对比度。因此,NSI可以在临床上可用的线性阵列上使用具有多个转向角的PWI创建图像的新型手段,同时减少与光栅裂片相关的不良反应。

Plane wave imaging (PWI) with angular compounding has gained in popularity over recent years because it provides high frame rates and good image properties. However, most linear arrays used in clinical practice have a pitch that is equal to than the wavelength of ultrasound. Hence, the presence of grating lobes is a concern for PWI using multiple transmit angles. The presence of grating lobes produces clutter in images and reduces the ability to observe tissue contrast. Techniques to reduce or eliminate the presence of grating lobes for PWI using multiple angles will result in improved image quality. Null subtraction imaging (NSI) is a nonlinear beamforming technique that has been explored for improving the lateral resolution of ultrasonic imaging. However, the apodization scheme used in NSI also eliminates or greatly reduces the presence of grating lobes. Imaging tasks using NSI were evaluated in simulations and physical experiments involving tissue-mimicking phantoms and rat tumors in vivo. Images created with NSI were compared with images created using traditional delay and sum (DAS) with Hann apodization and images created using a generalized coherence factor (GCF). NSI was observed to greatly reduce the presence of grating lobes in ultrasonic images, compared to DAS with Hann and GCF, while maintaining spatial resolution and contrast in the images. Therefore, NSI can provide a novel means of creating images using PWI with multiple steering angles on clinically available linear arrays while reducing the adverse effects associated with grating lobes.

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