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RF signal local compression computation for imaging strains within a vessel mimicking cryogel phantom and a carotid artery

机译:用于模仿冷冻糊体和颈动脉的血管内成像菌株的RF信号局部压缩计算

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A major complication of atherosclerosis remains plaque ruptures which consequences can be acute thrombosis, myocardial infarct and sudden ischaemic death. Medium elastic properties are deeply involved in rupture mechanisms and can be investigated by Elastography, which estimates from pairs of RF ultrasound signals, the strain distribution occurring within a medium, in response to a stress. In this paper, elastograms obtained with an original 2-layer vessel mimicking cryogel phantom and a fresh excised human carotid artery are presented. The experimental setup consists mainly in a CVIS ultrasound scanner with a 30 MHz mechanical rotating single element, an oscilloscope Lecroy 9374L and a self-made pressuring system modifying the static lumen pressure by varying the fluid volume. RF data were digitised at a sampling frequency of 500 MHz, stored on disc and processed off-line with a method we developed, based on the principle that tissue deformation induces within RF signals, variations comparable to local compression factors. This method has been proved to be accurate for strains up to 7% and very adapted for investigating highly heterogeneous tissues like atherosclerotic arteries. Results have shown the method ability to separate regions with different mechanical properties, whereas the acoustical features are similar. Moreover the phantom elastogram exhibits between the two layers a strain ratio that matches perfectly reported abacus on the cryogel stiffness. In parallel arterial elastograms by presenting estimated strains in a wider range [0%-3.5%] than previous reported results, improve the discrimination between healthy and diseased regions.
机译:动脉粥样硬化的主要并发症仍然是斑块破裂,后果可能是急性血栓形成,心肌梗塞和突然缺血死亡。中等弹性特性深受涉及破裂机制,并且可以通过弹性摄影来研究,该弹性显影估计在RF超声信号的对中,在介质中发生应变分布,响应于应力。在本文中,提出了用原始的双层容器获得的弹性图,模仿冷冻糊体和新鲜切除的人类颈动脉。实验设置主要由CVIS超声扫描仪组成,具有30MHz机械旋转单元件,示波器Lecroy 9374L和自制压力系统通过改变流体体积来改变静态内腔压力。 RF数据以500 MHz的采样频率数字化,基于组织变形在RF信号内引起的原理,使用我们开发的方法处理了离线,并处理了离线的方法,与局部压缩因子相当的变化。该方法已被证明是高达7%的菌株的准确性,并且非常适合于研究动脉粥样硬化动脉等高度异质组织。结果表明了具有不同机械性能的区域的方法能力,而声学特征是相似的。此外,Phantom弹性图在两层之间表现出一种与冷冻凝胶刚度完全报告的算盘匹配的应变比。在平行动脉弹性图中,通过呈现较宽范围的估计菌株[0%-3.5%]而不是先前的报告结果,改善了健康和患病地区之间的歧视。

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