首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Manufacturing Abdominal Aorta Hydrogel Tissue-Mimicking Phantoms for Ultrasound Elastography Validation
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Manufacturing Abdominal Aorta Hydrogel Tissue-Mimicking Phantoms for Ultrasound Elastography Validation

机译:制造腹部主动脉水凝胶模拟体模以进行超声弹性成像验证

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摘要

Ultrasound (US) elastography, or elasticity imaging, is an adjunct imaging technique that utilizes sequential US images of soft tissues to measure the tissue motion and infer or quantify the underlying biomechanical characteristics. For abdominal aortic aneurysms (AAA), biomechanical properties such as changes in the tissue's elastic modulus and estimates of the tissue stress may be essential for assessing the need for the surgical intervention. Abdominal aortic aneurysms US elastography could be a useful tool to monitor AAA progression and identify changes in biomechanical properties characteristic of high-risk patients.A preliminary goal in the development of an AAA US elastography technique is the validation of the method using a physically relevant model with known material properties. Here we present a process for the production of AAA tissue-mimicking phantoms with physically relevant geometries and spatially modulated material properties. These tissue phantoms aim to mimic the US properties, material modulus, and geometry of the abdominal aortic aneurysms. Tissue phantoms are made using a polyvinyl alcohol cryogel (PVA-c) and molded using 3D printed parts created using computer aided design (CAD) software. The modulus of the phantoms is controlled by altering the concentration of PVA-c and by changing the number of freeze-thaw cycles used to polymerize the cryogel. The AAA phantoms are connected to a hemodynamic pump, designed to deform the phantoms with the physiologic cyclic pressure and flows. Ultra sound image sequences of the deforming phantoms allowed for the spatial calculation of the pressure normalized strain and the identification of mechanical properties of the vessel wall. Representative results of the pressure normalized strain are presented.
机译:超声(US)弹性成像或弹性成像是一种辅助成像技术,它利用软组织的连续US图像来测量组织运动并推断或量化潜在的生物力学特征。对于腹主动脉瘤(AAA),生物力学特性(例如组织弹性模量的变化和组织应力的估计)可能对于评估手术干预的必要性至关重要。腹主动脉瘤US弹性成像可能是监测AAA进展并确定高危患者特征的生物力学特性变化的有用工具。AAA US弹性成像技术发展的初步目标是使用物理相关模型对方法进行验证具有已知的材料特性。在这里,我们提出了一种生产具有物理相关的几何形状和空间调制的材料特性的AAA组织模拟体模的过程。这些组织体模的目的是模仿腹部主动脉瘤的US特性,材料模量和几何形状。组织体模使用聚乙烯醇冷冻凝胶(PVA-c)制成,并使用通过计算机辅助设计(CAD)软件创建的3D打印部件进行模制。通过改变PVA-c的浓度和改变用于聚合冷冻凝胶的冻融循环次数来控制模型的模量。 AAA体模连接到血液动力泵,该泵被设计为通过生理循环压力和流量使体模变形。变形体模的超声图像序列可用于压力归一化应变的空间计算和血管壁机械特性的识别。给出了压力归一化应变的代表性结果。

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