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基于新型 KNN-NTK-FM 无铅压电陶瓷的环保高灵敏度换能器,用于高频生物医学超声成像应用。

Eco-Friendly Highly Sensitive Transducers Based on a New KNN-NTK-FM Lead-Free Piezoelectric Ceramic for High-Frequency Biomedical Ultrasonic Imaging Applications.

出版信息

IEEE Trans Biomed Eng. 2019 Jun;66(6):1580-1587. doi: 10.1109/TBME.2018.2876063. Epub 2018 Nov 19.

Abstract

High-frequency ultrasonic imaging with improved spatial resolution has gained increasing attention in the field of biomedical imaging. Sensitivity of transducers plays a pivotal role in determining ultrasonic image quality. Conventional ultrasonic transducers are mostly made from lead-based piezoelectric materials that may be harmful to the human body and the environment. In this study, a new (K,Na)NbO-KTiNbO-BaZrO-FeO-MgO (KNN-NTK-FM) lead-free piezoelectric ceramic was utilized in developing eco-friendly transducers for high-frequency biomedical ultrasonic imaging applications. A needle transducer with a small active aperture size of 0.45 × 0.55 mm was designed and evaluated. The fabricated transducer exhibits great performance with a high center frequency (52.6 MHz), a good electromechanical coupling (k ∼ 0.45), a large bandwidth (64.4% at -6 dB), and a very low two-way insertion loss (10.1 dB). Such high sensitivity is superior to those transducers based on other lead-free piezoelectric materials and can even be comparable to the lead-based ones. Imaging performance of the KNN-NTK-FM needle transducer was analyzed by imaging a wire phantom and an agar tissue-mimicking phantom. Imaging capabilities of the transducer were further demonstrated by ex vivo imaging studies on a porcine eyeball and a rabbit aorta. The results suggest that the KNN-NTK-FM piezoceramic has many attractive properties over other lead-free piezoelectric materials in developing eco-friendly highly sensitive transducers for high-frequency biomedical ultrasonic imaging applications.

摘要

高频超声成像是生物医学成像领域的一个研究热点,其空间分辨率得到了不断提高。换能器的灵敏度在很大程度上决定了超声图像的质量。传统的超声换能器主要由含铅的压电材料制成,这对人体和环境可能有害。在这项研究中,我们采用了一种新型(K,Na)NbO-KTiNbO-BaZrO-FeO-MgO(KNN-NTK-FM)无铅压电陶瓷来开发用于高频生物医学超声成像应用的环保换能器。设计并评估了一种具有 0.45×0.55mm 小有效孔径的针状换能器。所制备的换能器具有优异的性能,中心频率为 52.6MHz,机电耦合系数 k 约为 0.45,带宽为 64.4%(-6dB),双向插入损耗非常低(10.1dB)。这种高灵敏度优于基于其他无铅压电材料的换能器,甚至可与基于铅的换能器相媲美。通过对金属丝和琼脂组织模拟体进行成像,对 KNN-NTK-FM 针状换能器的成像性能进行了分析。通过对猪眼球和兔主动脉的离体成像研究,进一步展示了换能器的成像能力。结果表明,KNN-NTK-FM 压电陶瓷在开发用于高频生物医学超声成像应用的环保、高灵敏度换能器方面,具有许多优于其他无铅压电材料的特性。

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