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Capacitive micromachined ultrasonic transducer (CMUT) arrays for medical imaging

机译:用于医学成像的电容式微加工超声换能器(CMUT)阵列

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摘要

Capacitive micromachined ultrasonic transducers (CMUTs) bring the fabrication technology of standard integrated circuits into the field of ultrasound medical imaging. This unique property, combined with the inherent advantages of CMUTs in terms of increased bandwidth and suitability for new imaging modalities and high frequency applications, have indicated these devices as new generation arrays for acoustic imaging. The advances in microfabrication have made possible to fabricate, in few years, silicon-based electrostatic transducers competing in performance with the piezoelectric transducers. This paper summarizes the fabrication, design, modeling, and characterization of 1D CMUT linear arrays for medical imaging, established in our laboratories during the past 3 years. Although the viability of our CMUT technology for applications in diagnostic echographic imaging is demonstrated, the whole process from silicon die to final probe is not fully mature yet for successful practical applications.
机译:电容式微加工超声换能器(CMUT)将标准集成电路的制造技术带入超声医学成像领域。这种独特的性能,再加上CMUT在增加带宽和适用于新成像方式和高频应用方面的固有优势,已表明这些设备是用于声成像的新一代阵列。近年来,微细加工的进步使得制造与压电换能器性能竞争的硅基静电换能器成为可能。本文总结了过去3年在我们实验室中建立的用于医学成像的一维CMUT线性阵列的制造,设计,建模和表征。尽管已证明了我们的CMUT技术可用于诊断超声成像的可行性,但对于成功的实际应用而言,从硅片到最终探针的整个过程尚未完全成熟。

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