Dual frequency transducers for intravascular ultrasound super-harmonic imaging and acoustic angiography

Jianguo Ma, Xiaoning Jiang, K. H. Martin, P. Dayton, Yang Li, Qifa Zhou
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引用次数: 17

Abstract

Imaging of coronary vasa vasorum may lead to assessment of the vulnerable plaque development in diagnosis of atherosclerosis diseases. Intravascular ultrasound (IVUS) imaging transducers capable of detecting microvessels via nonlinear contrast imaging could provide valuable diagnostic information, however such transducers are not yet produced commercially. Dual-frequency transducers capable of detection of microbubble super-harmonics have shown promise as a new contrast-enhanced IVUS (CE-IVUS) platform. Contrast-to-tissue ratio (CTR) in CE-IVUS imaging can be closely associated with the low frequency transmitter performance. In this paper, multiple dual frequency IVUS transducers with different transmission frequencies (6.5 and 5 MHz) and different materials (PMN-PT single crystals and 1-3 composite) were developed and evaluated. All transducer structures were constructed with the 30 MHz high frequency reception element in front of the low frequency transmission element. Super-harmonic imaging was carried out using a tissue mimicking phantom. With similar peak negative pressures, the lower transmission frequency transducers generated higher CTR (23 dB for 5 MHz transmission). With similar input excitations, the PMN-PT 1-3 composite produced higher resolution (70 μm for 1-cycle burst excitation) than single crystal ones (> 150 μm). Dual frequency transducers with 5 MHz transmitters made of PMN-PT 1-3 composite are preferable in the CE-IVUS imaging.
用于血管内超声超谐波成像和声学血管造影的双频换能器
在动脉粥样硬化疾病的诊断中,冠状动脉血管的显像可用于评估易损斑块的发展。血管内超声(IVUS)成像换能器能够通过非线性对比成像检测微血管,可以提供有价值的诊断信息,然而这种换能器尚未商业化生产。能够检测微泡超谐波的双频传感器已经显示出作为一种新的对比度增强IVUS (CE-IVUS)平台的前景。CE-IVUS成像中的组织对比度(CTR)与低频发射器的性能密切相关。本文研制了不同传输频率(6.5 MHz和5 MHz)、不同材料(PMN-PT单晶和1-3复合材料)的多个双频IVUS换能器,并对其进行了评价。所有换能器结构都将30 MHz高频接收元件置于低频发射元件前面。超谐波成像采用组织模拟模体。在峰值负压相似的情况下,传输频率较低的换能器产生较高的CTR (5mhz传输时为23 dB)。在输入激励相似的情况下,PMN-PT 1-3复合材料的分辨率(1周期突发激励为70 μm)高于单晶材料(> 150 μm)。由PMN-PT 1-3复合材料制成的5 MHz发射器的双频换能器在CE-IVUS成像中是优选的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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