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Volumetric Real-Time Imaging Using a CMUT Ring Array

机译:体积实时成像使用CmUT环形阵列

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摘要

A ring array provides a very suitable geometry for forward-looking volumetric intracardiac and intravascular ultrasound imaging. We fabricated an annular 64-element capacitive micromachined ultrasonic transducer (CMUT) array featuring a 10-MHz operating frequency and a 1.27-mm outer radius. A custom software suite was developed to run on a PC-based imaging system for real-time imaging using this device.This paper presents simulated and experimental imaging results for the described CMUT ring array. Three different imaging methods—flash, classic phased array (CPA), and synthetic phased array (SPA)—were used in the study. For SPA imaging, two techniques to improve the image quality—Hadamard coding and aperture weighting—were also applied. The results show that SPA with Hadamard coding and aperture weighting is a good option for ring-array imaging. Compared with CPA, it achieves better image resolution and comparable signal-to-noise ratio at a much faster image acquisition rate. Using this method, a fast frame rate of up to 463 volumes per second is achievable if limited only by the ultrasound time of flight; with the described system we reconstructed three cross-sectional images in real-time at 10 frames per second, which was limited by the computation time in synthetic beamforming.
机译:环形阵列提供非常合适的几何形状,用于前瞻性体积肠道和血管内超声成像。我们制造了环形64元件电容式微机械超声换能器(CMUT)阵列,具有10-MHz的工作频率和1.27mm外半径。开发了一种自定义软件套件以在基于PC的成像系统上运行,用于使用该设备进行实时成像。本文提出了所描述的CMUT环形阵列的模拟和实验成像结果。三种不同的成像方法 - 闪存,经典相控阵(CPA)和在研究中使用的合成分阶段阵列(SPA)。对于SPA成像,还应用了改善图像质量 - Hadamard编码和孔径加权的两种技术。结果表明,带有Hadamard编码和孔径加权的SPA是环形阵列成像的良好选择。与CPA相比,它以更快的图像采集率实现更好的图像分辨率和相当的信噪比。使用这种方法,如果仅受超声飞行时间仅限于仅限超声时间,则可以实现每秒高达463卷的快速帧速率;利用所描述的系统,我们将在每秒10帧的实时重建三个横截面图像,其受合成波束形成中的计算时间受到限制。

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