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Design, fabrication and characterization of a capacitive micromachined ultrasonic probe for medical imaging

机译:用于医学成像的电容式微加工超声探头的设计,制造和表征

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摘要

In this paper we report the design, fabrication process, and characterization of a 64-elements capacitive micromachined ultrasonic transducer (cMUT), 3 MHz center frequency, 100% fractional bandwidth. Using this transducer, we developed a linear probe for application in medical echographic imaging. The probe was fully characterized and tested with a commercial echographic scanner to obtain first images from phantoms and in vivo human body. The results, which quickly follow similar results obtained by other researchers, clearly show the great potentiality of this new emerging technology. The cMUT probe works better than the standard piezoelectric probe as far as the axial resolution is concerned, but it suffers from low sensitivity. At present this can be a limit, especially for in depth operation. But we are strongly confident that significant improvements can be obtained in the very near future to overcome this limitation, with a better transducer design, the use of an acoustic lens, and using well matched, front-end electronics between the transducer and the echographic system.
机译:在本文中,我们报告了64元素电容式微加工超声换能器(cMUT),3 MHz中心频率,100%的分数带宽的设计,制造过程和特性。使用此换能器,我们开发了一种用于医学超声成像的线性探头。对该探针进行了充分表征,并使用商用回波扫描仪进行了测试,以从人体模型和体内人体获得第一张图像。该结果迅速跟随其他研究人员获得的类似结果,清楚地表明了这项新兴技术的巨大潜力。就轴向分辨率而言,cMUT探头的性能优于标准压电探头,但灵敏度低。目前,这可能是一个限制,特别是对于深度操作而言。但是我们坚信,在不久的将来,通过更好的换能器设计,使用声透镜以及在换能器和回波成像系统之间使用匹配良好的前端电子设备,可以克服此限制而取得重大进步。 。

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