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具有顶正交到底电极阵列的快速正交行-列电子扫描。

Fast Orthogonal Row-Column Electronic Scanning With Top-Orthogonal-to-Bottom Electrode Arrays.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2017 Jun;64(6):1009-1014. doi: 10.1109/TUFFC.2017.2686781. Epub 2017 Mar 23.

Abstract

Recently, top-orthogonal-to-bottom electrode 2-D arrays were introduced as a practical design for 3-D ultrasound imaging without requiring the wiring of a 2-D grid of elements. However, previously proposed imaging schemes suffered from speed or image-quality limitations. Here, we propose a new imaging scheme which we call Fast Orthogonal Row-Column Electronic Scanning (FORCES). This new approach takes advantage of bias sensitivity to enable high-quality and fast B-scan imaging. We compare this imaging scheme with an equivalent linear array, a previously proposed row-column imaging scheme, as well as with the Explososcan imaging scheme for 2-D arrays through simulations. In a point phantom simulation, the lateral (azimuthal) resolution of a 64 ×64 element 6.67-MHz λ /2-pitch array using the FORCES imaging scheme with an f-number of 1.7 was 0.52 mm with similar in-plane image quality to an equivalent linear array but with improved and electronically steerable elevational resolution. When compared with other 3-D imaging schemes in point phantom simulations, the FORCES imaging scheme showed an azimuthal resolution improvement of 54% compared with Explososcan. Compared with a previously introduced row-column method, the FORCES imaging scheme had similar resolution but a 25-dB decrease in sidelobe amplitude, significantly impacting contrast to noise in scattering phantoms.

摘要

最近,提出了一种自上而下的正交电极 2-D 阵列设计,作为一种无需对元素 2-D 网格进行布线的 3-D 超声成像的实用设计。然而,以前提出的成像方案存在速度或图像质量方面的限制。在这里,我们提出了一种新的成像方案,我们称之为快速正交行-列电子扫描(FORCES)。这种新方法利用偏置灵敏度来实现高质量和快速的 B 扫描成像。我们通过模拟将这种成像方案与等效线性阵列、以前提出的行-列成像方案以及用于 2-D 阵列的 Explososcan 成像方案进行比较。在点目标模拟中,使用 FORCES 成像方案和 f 数为 1.7 的 64×64 个元素 6.67-MHz λ/2 间距阵列的横向(方位)分辨率为 0.52mm,与等效线性阵列具有相似的平面内图像质量,但具有改进的和电子可控的仰角分辨率。与点目标模拟中的其他 3-D 成像方案相比,FORCES 成像方案的方位分辨率提高了 54%,与 Explososcan 相比。与以前介绍的行-列方法相比,FORCES 成像方案具有相似的分辨率,但旁瓣幅度降低了 25dB,这对散射体模的对比度噪声有很大影响。

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