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首页> 外文期刊>Journal of Biomechanical Science and Engineering >Effect of right atrial contraction on prosthetic valve function in a mechanical pulmonary circulatory system
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Effect of right atrial contraction on prosthetic valve function in a mechanical pulmonary circulatory system

机译:机械性肺循环系统中右心房收缩对人工瓣膜功能的影响

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References(15) Improving the inflow characteristics of the right ventricular function and pulmonary circulatory hemodynamics was essential for more precise evaluation of newly designed heart valves. To examine a pulmonary hemodynamics, the authors have been developing a pulmonary mechanical mock circulatory system. In this study, the pneumatically driven right atrium model was newly developed for clarifying the effect of atrial contraction on the dynamic behavior of pulmonary prosthetic valves. We focused on the hemodynamic behavior of the outflow mechanical heart valve of the right ventricle that could be affected by the right atrial dynamic motion. A medical-grade bileaflet valve was employed and installed into the outflow portion of the right ventricle model and examined its changes in hemodynamic behavior caused by the active right atrial contraction. With the active atrial contraction, hemodynamic waveforms of either the right ventricle or atrium were obtained using the modified pulmonary mock circulatory system. The characteristics with atrial contraction were well simulated as the natural hemodynamics. The right ventricular output increased by around 5% and the peak regurgitant flow at the moment of valve closing significantly decreased by the presence of the atrial contraction. Our mechanical circulatory system could simulate the end-diastolic right ventricular inflow characteristics. We found that the atrial contraction under the low pressure condition such as pulmonary circulation promoted earlier valve closing and prolonged closing duration of prosthetic valve. The simulation of right atrial contraction was important in the quantitative examination of right heart prosthetic valves for congenital heart malformation.
机译:参考文献(15)改善右心室功能和肺循环血流动力学的流入特征对于更精确地评​​估新设计的心脏瓣膜至关重要。为了检查肺血流动力学,作者一直在开发一种肺部机械模拟循环系统。在这项研究中,新开发了气动右心房模型,以阐明心房收缩对肺人工瓣膜动态行为的影响。我们重点研究了右心室流出机械心脏瓣膜的血液动力学行为,该行为可能会受到右心房动态运动的影响。使用医用级双叶瓣并安装到右心室模型的流出部分,并检查其活动性右心房收缩引起的血液动力学行为的变化。通过主动的心房收缩,使用改良的肺模拟循环系统获得右心室或心房的血流动力学波形。心房收缩的特征被很好地模拟为自然血液动力学。右心室输出增加约5%,并且由于心房收缩的存在,在瓣膜关闭时峰值反流流量显着下降。我们的机械循环系统可以模拟舒张末期右心室的流入特征。我们发现,在低压条件下,例如肺循环,心房收缩促进了早期瓣膜关闭和延长了人工瓣膜关闭时间。右心房收缩的模拟对于定量检查右心人工瓣膜对于先天性心脏畸形非常重要。

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