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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >A CMUT probe for medical ultrasonography: from microfabrication to system integration
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A CMUT probe for medical ultrasonography: from microfabrication to system integration

机译:用于医学超声检查的CMUT探头:从微加工到系统集成

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摘要

Medical ultrasonography is a powerful and costeffective diagnostic technique. To date, high-end medical imaging systems are able to efficiently implement real-time image formation techniques that can dramatically improve the diagnostic capabilities of ultrasound. Highly performing and thermally efficient ultrasound probes are then required to successfully enable the most advanced techniques. In this context, ultrasound transducer technology is the current limiting factor. Capacitive micromachined ultrasonic transducers (CMUTs) are micro-electro-mechanical systems (MEMS)-based devices that have been widely recognized as a valuable alternative to piezoelectric transducer technology in a variety of medical imaging applications. Wideband operation, good thermal efficiency, and low fabrication cost, especially for those applications requiring high-volume production of small-area dice, are strength factors that may justify the adoption of this MEMS technology in the medical ultrasound imaging field. This paper presents the design, development, fabrication, and characterization of a 12-MHz ultrasound probe for medical imaging, based on a CMUT array. The CMUT array is microfabricated and packed using a novel fabrication concept specifically conceived for imaging transducer arrays. The performance of the developed probe is optimized by including analog front-end reception electronics. Characterization and imaging results are used to assess the performance of CMUTs with respect to conventional piezoelectric transducers.
机译:医学超声检查是一种功能强大且经济高效的诊断技术。迄今为止,高端医学成像系统能够有效地实施实时成像技术,从而可以显着提高超声的诊断能力。因此,需要高性能和高热效率的超声探头才能成功地实现最先进的技术。在这种情况下,超声换能器技术是当前的限制因素。电容式微加工超声换能器(CMUT)是基于微机电系统(MEMS)的设备,已被广泛认为是在各种医学成像应用中压电换能器技术的宝贵替代品。宽带操作,良好的热效率和较低的制造成本,尤其是对于那些需要大批量生产小面积骰子的应用而言,是强度因素,可以证明在医学超声成像领域采用这种MEMS技术是合理的。本文介绍了基于CMUT阵列的用于医学成像的12 MHz超声探头的设计,开发,制造和表征。 CMUT阵列使用专门为成像换能器阵列构想的新颖制造概念进行了微制造和包装。通过包括模拟前端接收电子设备,可以优化开发的探头的性能。表征和成像结果用于评估CMUT相对于传统压电换能器的性能。

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