1.5-Dimensional Circular Array Transducer for In Vivo Endoscopic Ultrasonography.

Zhang, Qi; Tan, Qingyuan; Liu, Jiamei; Chen, Weicen; Huang, Jiqing; Lei, Shuang; Li, Yongchuan; Long, Xiaojing et al. · IEEE Trans Biomed Eng · 2021

basic_science · Level V

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Abstract

OBJECTIVE: Traditional endoscopic ultrasonography (EUS), which uses one-dimensional (1-D) curvilinear or radial/circular transducers, cannot achieve dynamic elevational focusing, and the slice thickness is not sufficient. The purpose of this study was to design and fabricate a 1.5-dimensional (1.5-D) circular array transducer to achieve dynamic elevational focusing in EUS in vivo. METHODS: An 84 × 5 element 1.5-D circular array transducer was successfully developed and characterized in this study. It was fabricated with PZT-5H 1-3 composite that attained a high-electromechanical coupling factor and low-acoustic impedance. The acoustic field distribution was measured with different transmission modes to validate the 1.5-D elevational beam focusing capability. The imaging performance of the 84 × 5 element 1.5-D circular array transducer was evaluated by two wire phantoms, an agar-based cyst phantom, an ex vivo swine pancreas, and an in vivo rhesus macaque rectum based on multifocal ray-line imaging method with five-row elevational beam steering. RESULTS: It was demonstrated that the transducer exhibited a central frequency of 6.47 MHz with an average bandwidth of 50%, a two-way insertion loss of 23 dB, and crosstalk of <-26 dB around the center frequency. CONCLUSION: Dynamic elevational focusing and the enhancement of the slice thickness in EUS were obtained with a 1.5-D circular array transducer. SIGNIFICANCE: This study promotes the development of multirow and two-dimensional array EUS probes for a more precise clinical diagnosis and treatment.

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