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微非均匀线阵(MNULA)用于超声平面波成像。

Micro Non-Uniform Linear Array (MNULA) for Ultrasound Plane Wave Imaging.

机构信息

Division of Life Sciences and Medicine, School of Biomedical Engineering (Suzhou), University of Science and Technology of China, Hefei 230026, China.

Suzhou Institution of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou 215163, China.

出版信息

Sensors (Basel). 2021 Jan 18;21(2):640. doi: 10.3390/s21020640.

Abstract

Ultrasound plane wave imaging technology has been applied to more clinical situations than ever before because of its rapid imaging speed and stable imaging quality. Most transducers used in plane wave imaging are linear arrays, but their structures limit the application of plane wave imaging technology in some special clinical situations, especially in the endoscopic environment. In the endoscopic environment, the size of the linear array transducer is strictly miniaturized, and the imaging range is also limited to the near field. Meanwhile, the near field of a micro linear array has serious mutual interferences between elements, which is against the imaging quality of near field. Therefore, we propose a new structure of a micro ultrasound linear array for plane wave imaging. In this paper, a theoretical comparison is given through sound field and imaging simulations. On the basis of primary work and laboratory technology, micro uniform and non-uniform linear arrays were made and experimented with the phantom setting. We selected appropriate evaluation parameters to verify the imaging results. Finally, we concluded that the micro non-uniform linear array eliminated the artifacts better than the micro uniform linear array without the additional use of signal processing methods, especially for target points in the near-field. We believe this study provides a possible solution for plane wave imaging in cramped environments like endoscopy.

摘要

超声平面波成象技术由于其快速的成象速度和稳定的成象质量,已经被应用于比以往更多的临床情况。大多数用于平面波成象的换能器是线性阵列,但它们的结构限制了平面波成象技术在某些特殊临床情况下的应用,特别是在内窥镜环境中。在内窥镜环境中,线性阵列换能器的尺寸被严格地小型化,并且成像范围也限于近场。同时,微线性阵列的近场存在元件之间严重的相互干扰,这不利于近场的成象质量。因此,我们提出了一种用于平面波成象的微超声线性阵列的新结构。本文通过声场和成像模拟进行了理论比较。在初步工作和实验室技术的基础上,制作了微均匀和非均匀线性阵列,并在幻影设置中进行了实验。我们选择了适当的评价参数来验证成像结果。最后,我们得出结论,微非均匀线性阵列在不额外使用信号处理方法的情况下,比微均匀线性阵列更好地消除了伪影,特别是对于近场中的目标点。我们相信这项研究为内窥镜等狭小环境中的平面波成象提供了一种可能的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0af/7831312/0c5560a9df31/sensors-21-00640-g001.jpg

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