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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Design, Fabrication, and Characterization of a Bifrequency Colinear Array
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Design, Fabrication, and Characterization of a Bifrequency Colinear Array

机译:共线频率阵列的设计,制作和表征

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摘要

Ultrasound imaging with high resolution and large penetration depth has been increasingly adopted in medical diagnosis, surgery guidance, and treatment assessment. Conventional ultrasound works at a particular frequency, with a fractional bandwidth of , limiting the imaging resolution or depth of field. In this paper, a bifrequency colinear array with resonant frequencies of 8 and 20 MHz was investigated to meet the requirements of resolution and penetration depth for a broad range of ultrasound imaging applications. Specifically, a 32-element bifrequency colinear array was designed and fabricated, followed by element characterization and real-time sectorial scan (S-scan) phantom imaging using a Verasonics system. The bifrequency colinear array was tested in four different modes by switching between low and high frequencies on transmit and receive. The four modes included the following: 1) transmit low, receive low; 2) transmit low, receive high; 3) transmit high, receive low; and 4) transmit high, receive high. After testing, the axial and lateral resolutions of all modes were calculated and compared. The results of this study suggest that bifrequency colinear arrays are potential aids for wideband fundamental imaging and harmonic/subharmonic imaging.
机译:具有高分辨率和大穿透深度的超声成像已在医学诊断,手术指导和治疗评估中被越来越多地采用。常规超声以特定的频率工作,带宽为,限制了成像分辨率或景深。在本文中,研究了共振频率分别为8和20 MHz的双频共线性阵列,以满足广泛的超声成像应用对分辨率和穿透深度的要求。具体来说,设计并制造了32个元素的双频共线阵列,然后使用Verasonics系统对元素进行表征并进行实时扇形扫描(S-scan)幻像成像。通过在发射和接收的低频和高频之间切换,在四种不同模式下测试了双频共线性阵列。四种模式包括:1)低位发送,低位接收; 2)发射低,接收高; 3)发射高,接收低;和4)发送高电平,接收高电平。测试后,计算并比较了所有模式的轴向和横向分辨率。这项研究的结果表明,双频共线性阵列是宽带基本成像和谐波/次谐波成像的潜在辅助手段。

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