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Assessment of left heart and pulmonary circulation flow dynamics by a new pulsed mock circulatory system

机译:新型脉冲模拟循环系统评估左心和肺循环血流动力学

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We developed a new mock circulatory system that is able to accurately simulate the human blood circulation from the pulmonary valve to the peripheral systemic capillaries. Two independent hydraulic activations are used to activate an anatomical-shaped left atrial and a left ventricular silicon molds. Using a lumped model, we deduced the optimal voltage signals to control the pumps. We used harmonic analysis to validate the experimental pulmonary and systemic circulation models. Because realistic volumes are generated for the cavities and the resulting pressures were also coherent, the left atrium and left ventricle pressure–volume loops were concordant with those obtained in vivo. Finally we explored left atrium flow pattern using 2C-3D+T PIV measurements. This gave a first overview of the complex 3D flow dynamics inside realistic left atrium geometry.
机译:我们开发了一种新的模拟循环系统,该系统能够准确模拟从肺动脉瓣到周围系统毛细血管的人体血液循环。使用两个独立的液压激活来激活解剖形状的左心房和左心室硅模具。使用集总模型,我们推导了最佳电压信号来控制泵。我们使用谐波分析来验证实验性肺循环和体循环模型。由于为腔体生成了实际的体积,并且所产生的压力也一致,因此左心房和左心室的压力-体积环与体内获得的相符。最后,我们使用2C-3D + T PIV测量技术探索了左心房血流模式。这是对现实的左心房几何形状内复杂的3D流动动力学的初步概述。

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