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Microfluidic model of bubble lodging in microvessel bifurcations

机译:微血管分叉中气泡停留的微流模型

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The lodging mechanisms and dynamics of cardiovascular gas bubbles are investigated in microfluidic model bifurcations made of poly(dimethylsiloxane). This work is motivated by gas embolotherapy for the potential treatment of cancer by tumor infarction. The results show that the critical driving pressure below which a bubble will lodge in a bifurcation is significantly less than the driving pressure required to dislodge it. From the results the authors estimate that gas bubbles from embolotherapy can lodge in vessels 20 μm or smaller in diameter, and conclude that bubbles may potentially be used to reduce blood flow to tumor microcirculation.
机译:在由聚二甲基硅氧烷制成的微流模型分叉中研究了心血管气泡的倒伏机理和动力学。这项工作是由气体栓塞疗法推动的,以通过肿瘤梗塞来潜在治疗癌症。结果表明,临界驱动压力(在该临界驱动压力以下)气泡将在分叉中滞留,该临界驱动压力明显小于驱除气泡所需的驱动压力。根据这些结果,作者估计,栓塞治疗产生的气泡可滞留在直径20μm或更小的血管中,并得出结论认为,气泡可能潜在地用于减少流向肿瘤微循环的血液。

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