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A MICROFLUIDIC MODEL OF CARDIOVASCULAR BUBBLE LODGING

机译:心血管泡沫覆盖的微流体模型

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Embolotherapy involves the occlusion of blood flow to tumors to treat a variety of cancers, including renal carcinoma and hepatocellular carcinoma. The accompanying liver cirrhosis makes the treatment of hepatocellular carcinoma by traditional methods difficult. Previous attempts at embolotherapy have used solid emboli. A major difficulty in embolotherapy is restricting delivery of the emboli to the tumor. We are developing a novel minimally invasive gas embolotherapy technique that uses gas bubbles rather than solid emboli. The bubbles originate as encapsulated liquid droplets that are small enough to pass through capillaries. The droplets can be selectively vaporized in vivo by focused high intensity ultrasound to form gas bubbles which are then sufficiently large to lodge in the tumor vasculature. We investigated the dynamics of bubble lodging in microfluidic model bifurcations made of poly(dimethylsiloxane) and in theoretical analyses. 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. Based these results, we estimate that gas bubbles from embolotherapy can lodge in vessels 20μm or smaller in diameter, and conclude that bubbles may potentially be used to reduce blood flow to tumor microcirculation.
机译:栓塞疗法涉及血流闭塞到肿瘤以治疗各种癌症,包括肾癌和肝细胞癌。伴随的肝硬化使传统方法难以治疗肝细胞癌。以前的栓塞治疗尝试使用了固体栓子。栓塞治疗的主要困难是限制栓塞的栓塞。我们正在开发一种新型侵入性气体栓塞技术,使用气泡而不是固体栓子。气泡源于封装的液滴,足以通过毛细血管。可以通过聚焦的高强度超声在体内选择性地蒸发液滴,以形成气泡,然后将其足够大的气泡在肿瘤脉管系统中足够大。我们调查了由聚(二甲基硅氧烷)和理论分析制成的微流体模型分岔中泡沫包装的动态。结果表明,下面的临界驱动压力在分叉中的泡沫中将延长的临界驱动压力明显小于脱臼所需的驱动压力。基于这些结果,估计栓塞治疗的气泡可以在直径20μm或更小的血管中提取,并且得出泡沫可能用于降低血液流向肿瘤微循环。

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