Litcius/Paper detail

Design and Fabrication of a High-Frequency Microconvex Array Transducer for Small Animals Imaging

Weicen Chen, Qi Zhang, Jiamei Liu, Shuang Lei, Yongchuan Li, Jiqing Huang, Lunhuang Guo, Hairong Zheng, Dawei Wu, Teng Ma

2022IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control23 citationsDOI

Abstract

High-frequency convex array transducer, featuring both high spatial resolution and wide field of view, has been successfully developed for ophthalmic imaging. To further expand its application range to small animals' imaging, this work develops a high-frequency microconvex array transducer possessing smaller aperture size and wider scanning angle. This transducer featured 128 array elements arranged in a curvilinear 2-2 piezoelectric composite configuration, yielding a maximum view angle of 97.8°. The array was composed of two front matching layers, a nonconductive backing layer, and a customized flexible circuit that electrically connected array elements to coaxial cables. The center frequency and the -6-dB fractional bandwidth were about 18.14 MHz and 69.15%, respectively. The image of a tungsten wire phantom resulted in approximately 62.9- [Formula: see text] axial resolution and 121.3- [Formula: see text] lateral resolution. The image of the whole kidney of a rat as well as its internal arteries was acquired in vivo, demonstrating the imaging capability of the proposed high-frequency microconvex array transducers for small animals' imaging applications.

Topics & Concepts

TransducerMaterials scienceOpticsImaging phantomCenter frequencyImage resolutionBandwidth (computing)AcousticsPhased arrayCoaxialAperture (computer memory)Phased array ultrasonicsPhysicsComputer scienceEngineeringElectrical engineeringAntenna (radio)TelecommunicationsBand-pass filterUltrasound Imaging and ElastographyUltrasound and Hyperthermia ApplicationsWireless Body Area Networks