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首页> 外文期刊>RSC Advances >A near-superhydrophobic surface reduces hemolysis of blood flow in tubes
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A near-superhydrophobic surface reduces hemolysis of blood flow in tubes

机译:近超疏水表面减少了管中血流的溶血

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摘要

The use of an external mechanical pump to sustain the circulation in a body, also known as extracorporeal circulation, is an integral part of many medical procedures such as hemodialysis and cardio-pulmonary bypass. However, the damage to red blood cells caused by the flow-induced shear stresses in the flow circuit has remained an intractable problem for many years, limiting the operational duration of extracorporeal circulation. In this study, near-superhydrophobic surfaces were investigated as a potential solution to mitigate the hemolysis of blood during extracorporeal pumping through the use of a proof-of-concept flow circuit. It was found that the thin layer of air trapped by the near-superhydrophobic surface due to the Cassie-Baxter state reduced the wall shear stress exerted on the blood flow, resulting in a corresponding decrease in the rate of hemolysis. For blood that undergoes an oscillatory flow, this reduction in the hemolysis was shown to be directly related to the mean shear rate and shear rate amplitude of the flow.
机译:使用外部机械泵以维持体内的循环,也称为体外循环,是许多医疗程序的组成部分,如血液透析和心血管肺旁路。然而,由于流动回路中的流动抗剪切应力引起的红细胞对红细胞的损害仍然是多年来的难以处理的问题,这限制了体外循环的操作持续时间。在这项研究中,研究了近超疏水表面作为在体外泵送期间通过使用概念的流动电路来减轻血液的溶解的潜在溶液。发现由于Cassie-Baxter状态引起的近二氢表面捕获的薄层的空气层降低了施加在血流上施加的壁剪切应力,导致溶血速率降低。对于经历振荡流动的血液,该溶血的降低显示与流动的平均剪切速率和剪切速率幅度直接相关。

著录项

  • 来源
    《RSC Advances 》 |2016年第67期| 共9页
  • 作者单位

    ETH Tannenstr 3 CLA J 33 CH-8092 Zurich Switzerland;

    NUS High Sch Math &

    Sci 20 Clementi Ave 1 Singapore 129957 Singapore;

    NUS High Sch Math &

    Sci 20 Clementi Ave 1 Singapore 129957 Singapore;

    Natl Univ Singapore Dept Biomed Engn 7 Engn Dr 1 Singapore 117574 Singapore;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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