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首页> 外文期刊>Journal of biomechanical engineering. >Computational Modeling and Analysis of Murmurs Generated by Modeled Aortic Stenoses
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Computational Modeling and Analysis of Murmurs Generated by Modeled Aortic Stenoses

机译:模型主动脉狭窄产生的杂音的计算建模与分析

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In this study, coupled hemodynamic-acoustic simulations are employed to study the generation and propagation of murmurs associated with aortic stenoses where the aorta with a stenosed aortic valve is modeled as a curved pipe with a constriction near the inlet. The hemodynamics of the poststenotic flow is investigated in detail in our previous numerical study (Zhu et al., 2018, "Computational Modelling and Analysis of Haemodynamics in a Simple Model of Aortic Stenosis," J. Fluid Mech., 851, pp. 23-49). The temporal history of the pressure on the aortic lumen is recorded during the hemodynamic study and used as the murmur source in the acoustic simulations. The thorax is modeled as an elliptic cylinder and the thoracic tissue is assumed to be homogeneous, linear and viscoelastic. A previously developed high-order numerical method that is capable of dealing with immersed bodies is applied in the acoustic simulations. To mimic the clinical practice of auscultation, the sound signals from the epidermal surface are collected. The simulations show that the source of the aortic stenosis murmur is located at the proximal end of the aortic arch and that the sound intensity pattern on the epidermal surface can predict the source location of the murmurs reasonably well. Spectral analysis of the murmur reveals the disconnect between the break frequency obtained from the flow and from the murmur signal. Finally, it is also demonstrated that the source locations can also be predicted by solving an inverse problem using the free-space Green's function. The implications of these results for cardiac auscultation are discussed.
机译:在该研究中,采用耦合的血流动力学模拟来研究与主动脉狭窄相关的杂音的产生和传播,其中具有狭窄的主动脉瓣的主动脉被建模为具有靠近入口附近的收缩的弯曲管。在我们之前的数值研究(Zhu等,2018年“在主动脉狭窄的简单模型中详细研究了后置流的血流动力学(Zhu等,2018,”血液力学血管动力学的计算建模和分析,“J. Fluid Mech。,851,PP。23 -49)。在血流动力学研究期间记录主动脉内腔的压力的时间历史,并用作声学模拟中的杂音源。胸部被建模为椭圆缸,并且假设胸部组织是均匀的,线性和粘弹性的。先前开发了能够处理浸入物体的高阶数值方法应用于声学模拟。为了模仿听诊的临床实践,收集来自表皮表面的声音信号。模拟表明,主动脉狭窄杂音的来源位于主动脉弓的近端,表皮表面上的声强图案可以完全良好地预测杂音的源位置。杂音的光谱分析揭示了从流动和杂音信号获得的断裂频率之间的断开。最后,还证明了源位置也可以通过使用自由空间绿色的功能来解决逆问题来预测。讨论了这些结果对心脏听诊的影响。

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