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Effects of altered blood flow induced by the muscle pump on thrombosis in a microfluidic venous valve model

机译:肌肉泵血流改变对微流体静脉阀模型血栓形成的影响

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摘要

Deep vein thrombosis (DVT) often occurs in the lower limb veins of bedridden patients and greatly reduces the quality of life. The altered blood flow in venous valves induced by the insufficient efficacy of the muscle pump is commonly considered as a main factor. However, it is still a great challenge to observe the altered blood flow in real time, and its role in the formation of thrombi is poorly understood. Here we make a microfluidic venous valve model with flexible leaflets in a deformable channel that can mimic the motion of valves and the compression of vessels by muscle contraction, and identify the stasis and intermittent reflux in the valve pocket generated by the muscle pump. A thrombus forms in the stasis flow, while the intermittent reflux removes the fibrin and inhibits the growth of the thrombus. A flexible microfluidic device that can mimic the motion of valves and the contraction of vessels would have wide applications in the research on cardiovascular diseases.
机译:深静脉血栓形成(DVT)经常发生在卧床患者的下肢静脉中,大大降低了生活质量。 通过肌肉泵的不足效果引起的静脉阀中的改变的血流通常被认为是主要因素。 然而,在实时观察改变的血液流动仍然是一个巨大的挑战,并且它在血栓形成中的作用很差。 在这里,我们制造一个微流体静脉阀模型,可变形通道中的柔性小叶,可以模仿阀门的运动和通过肌肉收缩的血管的压缩,并识别肌肉泵产生的阀袋中的椎板和间歇回流。 血管流动中的血栓形成,而间歇回流去除纤维蛋白并抑制血栓的生长。 一种柔性微流体装置,可以模仿阀门的运动和血管收缩将在心血管疾病的研究中具有广泛的应用。

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