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