Interpolated Plane Wave Imaging: IPWI

Roberto Henry Herrera, Jorge Nustes, Duc Nguyen, Adrianus Elvers
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Abstract

This paper offers a solution to the problems caused by sub-Nyquist spatial sampling in ultrasound image generation, which can result in aliasing and grating lobes in Full Matrix Capture (FMC) and Plane Wave Imaging (PWI). Neglecting the spatial sampling requirements can lead to artifacts that compromise the accuracy of ultrasound image interpretation. Although limiting the transducer element pitch to half the wavelength can alleviate grating lobes, it can also cause reduced energy transmission and limit the method's applicability in thick-walled structures. Similarly, using sparse techniques to increase acquisition speed by subsampling the firing elements is also constrained by the sampling criterion. To address these challenges, we introduce an interpolation step to PWI, which overcomes ambiguities imposed by the sampling theorem and improves image quality and acquisition speed.
插值平面波成像:IPWI
针对超声图像生成过程中由于亚奈奎斯特空间采样导致的全矩阵捕获(FMC)和平面波成像(PWI)中出现混叠和光栅瓣等问题,提出了一种解决方案。忽略空间采样要求可能导致损害超声图像解释的准确性的人工制品。虽然将换能器元件间距限制在波长的一半可以缓解光栅瓣,但也会导致能量传输减少,限制了该方法在厚壁结构中的适用性。同样,使用稀疏技术通过对发射元素进行子采样来提高捕获速度也受到采样准则的约束。为了解决这些挑战,我们在PWI中引入了插值步骤,克服了采样定理带来的模糊性,提高了图像质量和采集速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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