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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >44-MHz LiNbO3 transducers for UBM-guided Doppler ultrasound
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44-MHz LiNbO3 transducers for UBM-guided Doppler ultrasound

机译:用于UBM制导的多普勒超声的44MHz LiNbO3传感器

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In the post genome-sequencing era, physiological phenotyping of genetically engineered mice is critical to further our understanding of the functional consequences of specific genetic defects. We have developed a 40-50 MHz ultrasound biomicroscopy-(UBM) guided, pulsed Doppler system for the sensitive detection of in vivo blood velocity waveforms in the mouse embryonic cardiovascular system. Our approach uses separate transducers for simultaneous imaging and Doppler blood flow measurements. To this end, unfocused, air-backed lithium niobate (LiNbO3) transducers provide sensitive Doppler detection and the flexibility of adjusting the axial position of the pulsed Doppler sample volume over many millimeters depth range of the collimated ultrasound beam. In this paper we describe the fabrication and characterization of the electromechanical and ultrasonic beam properties of 44-MHz LiNbO3 Doppler transducers. We further demonstrate the utility of these Doppler transducers for interrogating blood vessels such as the dorsal aorta over a range of mouse embryonic stages and axial range-gate depths.
机译:在后基因组测序时代,基因工程小鼠的生理表型对于进一步了解特定遗传缺陷的功能后果至关重要。我们已经开发了40-50 MHz超声生物显微术(UBM)引导的脉冲多普勒系统,用于敏感检测小鼠胚胎心血管系统中的体内血流波形。我们的方法使用单独的换能器进行同步成像和多普勒血流测量。为此,未聚焦的空气支持铌酸锂(LiNbO3)传感器可提供灵敏的多普勒检测功能,并可在准直超声束的数毫米深度范围内灵活调节脉冲多普勒样本量的轴向位置。在本文中,我们描述了44MHz LiNbO3多普勒换能器的机电特性和超声束特性的制造和表征。我们进一步证明了这些多普勒换能器在一系列小鼠胚胎阶段和轴向范围门深度上询问诸如背主动脉之类的血管的实用性。

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