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Design factors of intravascular dual frequency transducers for super-harmonic contrast imaging and acoustic angiography

机译:用于超谐波对比成像和声学血管造影的血管内双频换能器的设计因素

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摘要

Imaging of coronary vasa vasorum may lead to assessment of the vulnerable plaque development in diagnosis of atherosclerosis diseases. Dual frequency transducers capable of detection of microbubble super-harmonics have shown promise as a new contrast-enhanced intravascular ultrasound (CE-IVUS) platform with the capability of vasa vasorum imaging. Contrast-to-tissue ratio (CTR) in CE-IVUS imaging can be closely associated with the low frequency transmitter performance. In this paper, transducer designs encompassing different transducer layouts, transmitting frequencies, and transducer materials are compared for optimization of imaging performance. In the layout selection, the stacked configuration showed superior super-harmonic imaging compared with the interleaved configuration. In the transmitter frequency selection, a decrease in frequency from 6.5 MHz to 5 MHz resulted in an increase of CTR from 15 dB to 22 dB when receiving frequency was kept constant at 30 MHz. In the material selection, the dual frequency transducer with the lead magnesium niobate-lead titanate (PMN-PT) 1-3 composite transmitter yielded higher axial resolution compared to single crystal transmitters (70 μm compared to 150 μm pulse length). These comparisons provide guidelines for design of intravascular acoustic angiography transducers.
机译:冠状动脉血管造影的成像可能导致评估动脉粥样硬化疾病的易损斑块发展。能够检测微泡超谐波的双频换能器已被证明是具有血管造影成像功能的新型造影剂增强血管内超声(CE-IVUS)平台。 CE-IVUS成像中的组织对比度(CTR)与低频发射机的性能密切相关。在本文中,比较了包含不同换能器布局,发射频率和换能器材料的换能器设计,以优化成像性能。在布局选择中,与交错配置相比,堆叠配置显示出出众的超谐波成像效果。在发射机频率选择中,当接收频率保持恒定在30 MHz时,频率从6.5 MHz降低到5 MHz导致CTR从15 dB升高到22 dB。在材料选择上,与铌酸铅镁-钛酸铅(PMN-PT)1-3复合发射器相比,双频换能器比单晶发射器具有更高的轴向分辨率(70μm,而脉冲长度为150μm)。这些比较为血管内声学血管造影换能器的设计提供了指导。

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