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Row-Column Capacitive Micromachined Ultrasonic Transducers for Medical Imaging

机译:用于医学成像的行列电容式微超声传感器

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摘要

Ultrasound imaging plays an important role in modern medical diagnosis. Recent progress in real-time 3-D ultrasound imaging can offer critical information such as the accurate estimation of organ, cyst, or tumour volumes. However, compared to conventional 2-D ultrasound imaging, the large amount of data and circuit complexity found in 3-D ultrasound imaging results in very expensive systems. Therefore, a simplification scheme for 3-D ultrasound imaging technology is needed for a more wide-spread use and to advance clinical development of volumetric ultrasound. Row-column addressing 2-D array is one particular simplification scheme that requires only N + N addressing lines to activate each element in an N × N array. As a result, the fabrication, circuit, and processing complexity dramatically decrease. Capacitive micromachined ultrasonic transducer (CMUT) technology was chosen to fabricate the array as it offers micro-precision fabrication and a wide bandwidth, which make it an attractive transducer technology.The objective of this thesis is to investigate and demonstrate the imaging potential of row-column CMUT arrays for RT3D imaging. First, the motivation, physics, and modelling of both CMUTs and row-column arrays are described, followed by the demonstration of a customized row-column CMUT pseudo-real-time 3-D imaging system. One particular limitation about row-column arrays discovered as part of this dissertation work is the limited field-of-view of the row-column arrays’ imaging performance. A curved row-column CMUT array was proposed to improve the field-of-view, and the resulting modelling of the acoustic field and simulated reconstructed image are presented. Furthermore, a new fabrication process was proposed to construct a curved row-column CMUT array. The resulting device was tested to demonstrate its flexibility to achieve the necessary curvature. Finally, a new wafer bonding process is introduced to tackle the next generation of RC-CMUT fabrication.Many of the new fabrication techniques reported in this work are useful for CMUT fabrication engineers. The analysis on row-column array also provides additional insights for 2-D array simplification research.
机译:超声成像在现代医学诊断中起着重要作用。实时3D超声成像的最新进展可以提供关键信息,例如器官,囊肿或肿瘤体积的准确估计。然而,与常规的2-D超声成像相比,在3-D超声成像中发现的大量数据和电路复杂性导致非常昂贵的系统。因此,需要3-D超声成像技术的简化方案以更广泛地使用并推进体积超声的临床开发。行列寻址二维阵列是一种特殊的简化方案,仅需要N + N条寻址线即可激活N×N阵列中的每个元素。结果,制造,电路和处理复杂度大大降低。电容微机械超声换能器(CMUT)技术被选择来制造阵列,因为它提供了微精度的制造和较宽的带宽,这使其成为一种有吸引力的换能器技术。本论文的目的是研究和证明行成像的成像潜力。用于RT3D成像的列CMUT阵列。首先,描述了CMUT和行列阵列的动机,物理原理和建模,然后演示了定制的行列CMUT伪实时3-D成像系统。作为本文工作的一部分,发现的关于行列阵列的一个特殊限制是行列阵列的成像性能的有限视野。提出了一种弯曲的行列CMUT阵列以改善视场,并给出了声场的建模结果和模拟的重建图像。此外,提出了一种新的制造工艺来构造弯曲的行-列CMUT阵列。测试所得装置以证明其具有实现所需曲率的灵活性。最后,引入了新的晶圆键合工艺来应对下一代RC-CMUT制造。这项工作中报道的许多新制造技术对CMUT制造工程师很有用。行列阵列分析还为二维阵列简化研究提供了更多见解。

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    CHEN ALBERT I-HSIANG;

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  • 年度 2016
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