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Myocardial stiffness assessment in pediatric cardiology using shear wave imaging

机译:儿科心脏病学中使用剪切波成像评估心肌硬度

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Shear wave elastography (SWE) is a potential tool to support diagnosis and surgical decision making in children with cardiac disorders. However, SWE in this particular setting is challenged by dispersion and 3D shear wave propagation paths, caused by the relatively thin and curved left ventricle with its anisotropic material properties, ultimately complicating the link between SW propagation and tissue stiffness. To study these complex wave phenomena and the accuracy of currently available signal processing algorithms, we used a combined experimental and numerical approach on a generic model of the left ventricle. These experiments revealed that phase speed analysis provided a better estimate of actual stiffness than group speed analysis. On the other hand, our finite element model contributed to gaining insights in the complex wave propagation pattern and allowed 3D-visualization of the SW.
机译:剪切波弹性成像(SWE)是支持心脏病患者的诊断和手术决策的潜在工具。然而,在这种特殊情况下,SWE受到色散和3D剪切波传播路径的挑战,该传播路径是由具有其各向异性材料特性的相对较薄且弯曲的左心室引起的,最终使SW传播与组织硬度之间的联系变得复杂。为了研究这些复杂的波现象以及当前可用信号处理算法的准确性,我们在左心室的通用模型上采用了组合的实验和数值方法。这些实验表明,相速度分析比群速度分析提供了更好的实际刚度估计。另一方面,我们的有限元模型有助于获得有关复杂波传播模式的见识,并允许SW的3D可视化。

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