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首页> 外文期刊>Ultrasound in Medicine and Biology >EX VIVO PORCINE ARTERIAL AND CHORIOALLANTOIC MEMBRANE ACOUSTIC ANGIOGRAPHY USING DUAL-FREQUENCY INTRAVASCULAR ULTRASOUND PROBES
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EX VIVO PORCINE ARTERIAL AND CHORIOALLANTOIC MEMBRANE ACOUSTIC ANGIOGRAPHY USING DUAL-FREQUENCY INTRAVASCULAR ULTRASOUND PROBES

机译:使用双频血管内超声探头的体外猪动脉和超纯铝膜声学血管造影

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摘要

The presence of blood vessels within a developing atherosclerotic plaque has been found to be correlated with increased plaque vulnerability and ensuing cardiac events, however, detection of coronary intraplaque neo-vascularization poses a significant challenge in the clinic. We describe here a new in vivo intravascular ultrasound imaging method using a dual-frequency transducer to visualize contrast flow in microvessels with high specificity. This method uses a specialized transducer capable of exciting contrast agents at a low frequency (5.5 MHz) while detecting their nonlinear superhamonics at a much higher frequency (37 MHz). In vitro evaluation of the approach was performed in a microvascular phantom to produce 3-D renderings of simulated vessel patterns and to determine image quality metrics as a function of depth. Furthermore, we describe the ability of the system to detect microvessels both ex vivo using porcine arteries and in vivo using the chorioallantoic membrane of a developing chicken embryo with optical confirmation. Dual-frequency contrast-specific imaging was able to resolve vessels similar in size to those found in vulnerable atherosclerotic plaques at clinically relevant depths. The results of this study add to the support for further evaluation and translation of contrast-specific imaging in intravascular ultrasound for the detection of vulnerable plaques in atherosclerosis. (C) 2016 Published by Elsevier Inc. on behalf of World Federation for Ultrasound in Medicine & Biology.
机译:已经发现正在发展的动脉粥样硬化斑块中血管的存在与斑块易损性增加和随后的心脏事件相关,但是,冠状动脉斑块内新血管形成的检测在临床上构成了重大挑战。我们在这里描述了一种新的体内血管内超声成像方法,使用双频换能器以高特异性可视化微血管中的造影剂流动。该方法使用一种专用换能器,该换能器能够在低频率(5.5 MHz)激发造影剂,同时在高得多的频率(37 MHz)处检测其非线性超谐波。该方法的体外评估是在微血管模型中进行的,以产生模拟血管图案的3D渲染,并确定图像质量指标作为深度的函数。此外,我们描述了该系统检测猪血管离体和使用发育中的鸡胚的绒膜尿囊膜在体内进行光学确认的体内检测微血管的能力。双频对比特异性成像能够分辨与在临床相关深度的脆弱动脉粥样硬化斑块中发现的血管大小相似的血管。这项研究的结果为进一步评估和翻译血管内超声中造影剂特异性成像以检测动脉粥样硬化中易损斑块提供了支持。 (C)2016由Elsevier Inc.代表世界医学和生物学超声联合会出版。

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