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设计、制作与评估高频超声应用的多点聚焦换能器。

Design, Fabrication, and Evaluation of Multifocal Point Transducer for High-Frequency Ultrasound Applications.

机构信息

Interdisciplinary Program of Biomedical Mechanical and Electrical Engineering, Pukyong National University, Busan 48513, Korea.

Center for Marine-Integrated Biomedical Technology, Pukyong National University, Busan 48513, Korea.

出版信息

Sensors (Basel). 2019 Feb 1;19(3):609. doi: 10.3390/s19030609.

Abstract

The present study illustrates the design, fabrication, and evaluation of a novel multifocal point (MFP) transducer based on polyvinylidene fluoride (PVDF) film for high-frequency ultrasound application. The fabricated MFP surface was press-focused using a computer numerical control (CNC) machining tool-customized multi-spherical pattern object. The multi-spherical pattern has five spherical surfaces with equal area and connected continuously to have the same energy level at focal points. Center points of these spheres are distributed in a linear pattern with 1 mm distance between each two points. The radius of these spheres increases steadily from 10 mm to 13.86 mm. The designed MFP transducer had a center frequency of 50 MHz and a -6 dB bandwidth of 68%. The wire phantom test was conducted to study and demonstrate the advantages of this novel design. The obtained results for MFP transducer revealed a significant increase (4.3 mm) of total focal zone in the near-field and far-field area compared with 0.48 mm obtained using the conventional single focal point transducer. Hence, the proposed method is promising to fabricate MFP transducers for deeper imaging depth applications.

摘要

本研究展示了一种基于聚偏二氟乙烯(PVDF)薄膜的新型多点聚焦(MFP)换能器的设计、制造和评估,可用于高频超声应用。所制造的 MFP 表面采用计算机数控(CNC)加工工具定制的多球形图案物体进行压聚焦。该多球形图案具有五个相等面积的球形表面,并连续连接,以在焦点处具有相同的能量水平。这些球体的中心点呈线性分布,每两个点之间的距离为 1 毫米。这些球体的半径从 10 毫米稳定增加到 13.86 毫米。设计的 MFP 换能器的中心频率为 50 MHz,-6 dB 带宽为 68%。进行了线阵测试以研究和展示这种新型设计的优势。与使用传统单焦点换能器获得的 0.48 毫米相比,MFP 换能器的近场和远场区域的总焦区显著增加(4.3 毫米)。因此,该方法有望用于制造用于更深成像深度应用的 MFP 换能器。

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