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A lumped-parameter approach for designing a novel pulsatile bioreactor for ex-vivo studies of human saphenous vein remodeling

机译:一种集总参数方法设计新型脉动生物反应器,用于人体大隐静脉重构的离体研究

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After coronary artery bypass grafting (CABG), the hemodynamic conditions experienced by the saphenous veins are similar to those experienced by coronary arteries: pulsatile pressure (80-120 mmHg), pulsatile flow (mean flow rate of 250 ml/min), and elevated shear stress (1-7 Pa). Here we present a novel pulsatile platform for studying the human saphenous vein early remodeling events after CABG. The system was designed in order to apply CABG-like pressure/flow stimulation patterns to the hosted human saphenous vein segments, i.e. a pulsatile pressure oscillating between a diastolic minimum and a systolic maximum in counter-phase with a pulsatile flow rate. Functional tests revealed good fitting of simulated and measured tracings and the ability of the pulsatile platform to mimic the complexity of the coronary hemodynamic environment with good fidelity in comparison with state-of-the-art devices. This system will enable us to study the biological response of human saphenous veins to CABG conditioning ex vivo, in currently ongoing experiments.
机译:冠状动脉搭桥术(CABG)后,大隐静脉所经历的血液动力学状况与冠状动脉所经历的相似:搏动性压力(80-120 mmHg),搏动性血流(平均流速250 ml / min)和升高剪切应力(1-7 Pa)。在这里,我们提出了一种新颖的脉动平台,用于研究CABG后人类大隐静脉的早期重塑事件。设计该系统是为了将CABG样的压力/血流刺激模式应用于宿主的人体大隐静脉段,即脉动压力在脉动流速的反相位下在舒张期最小值和收缩期最大值之间振荡。功能测试表明,与最新的设备相比,模拟和测量的轨迹非常合适,脉动平台具有良好的逼真度来模拟冠状动脉血流动力学环境的复杂性。该系统将使我们能够在当前正在进行的实验中研究人隐静脉对CABG调节的生物学反应。

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