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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >20 MHz/40 MHz dual element transducers for high frequency harmonic imaging
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20 MHz/40 MHz dual element transducers for high frequency harmonic imaging

机译:20 MHz / 40 MHz双元件换能器,用于高频谐波成像

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Concentric annular type dual element transducers for second harmonic imaging at 20 MHz / 40 MHz were designed and fabricated to improve spatial resolution and depth of penetration for ophthalmic imaging applications. The outer ring element was designed to transmit the 20 MHz signal and the inner circular element was designed to receive the 40 MHz second harmonic signal. Lithium niobate (LiNbO3), with its low dielectric constant, was used as the piezoelectric material to achieve good electrical impedance matching. Double matching layers and conductive backing were used and optimized by KLM modeling to achieve high sensitivity and wide bandwidth for harmonic imaging and superior time-domain characteristics. Prototype transducers were fabricated and evaluated quantitatively and clinically. The average measured center frequency for the transmit ring element was 21 MHz and the one-way -3 dB bandwidth was greater than 50%. The 40 MHz receive element functioned at 31 MHz center frequency with acceptable bandwidth to receive attenuated and frequency downshifted harmonic signal. The lateral beam profile for the 20 MHz ring elements at the focus matched the Field II simulated results well, and the effect of outer ring diameter was also examined. Images of a posterior segment of an excised pig eye and a choroidal nevus of human eye were obtained both for single element and dual element transducers and compared to demonstrate the advantages of dual element harmonic imaging.
机译:设计和制造用于20 MHz / 40 MHz二次谐波成像的同心环形双元件换能器,以提高眼科成像应用的空间分辨率和穿透深度。外环元件设计为发送20 MHz信号,内环元件设计为接收40 MHz二次谐波信号。介电常数低的铌酸锂(LiNbO3)被用作压电材料,以实现良好的电阻抗匹配。使用双层匹配层和导电背衬并通过KLM建模进行了优化,以实现高灵敏度和宽带宽,以实现谐波成像和出色的时域特性。原型换能器被制造并定量和临床评估。发射环形元件的平均测得中心频率为21 MHz,单向-3 dB带宽大于50%。 40 MHz接收元件以31 MHz中心频率工作,并具有可接受的带宽,以接收衰减和降频的谐波信号。焦点处的20 MHz环形元件的横向光束轮廓与Field II模拟结果非常匹配,并且还检查了外环直径的影响。对于单元件和双元件换能器,均获得了切除的猪眼后段和人眼的脉络膜痣的图像,并进行了比较,以证明双元件谐波成像的优势。

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