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Study on the blood flow in stenosed microvascular model under pulsed magnetic field

机译:脉冲磁场下狭窄的微血管模型中血流量的研究

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It is widely known that abnormal peripheral blood circulation due to intravascular stenosis causes ischemic diseases and blood circulatory disorders. The purpose of this study was to investigate the influence of pulsed magnetic field (PMF) on hemodynamic characteristics in blood vessel with stenosis of 33% with diameter of 15μm, with the change of PMF intensity and hematocrit (Ht) concentration. Stenosed microvascular channels were fabricated using polydimethylsiloxane (PDMS). Our PMF stimulator has the maximum intensity of 2700G at a transition time of 102 μs with pulse intervals of 1Hz. For the Ht altered RBCs suspension, the changes in blood flow and deformation of red blood cells (RBCs) were examined before and after PMF stimulus with various intensity of 200~2700G. In stenosed channel, threshold intensity for improvement of blood flow seems to be 400G. The higher the Ht, the higher the viscosity and the slower the velocity of RBCs, but after PMF stimulus, RBCs movement overall increased by more than 9~67% in both Ht 5% and 20% RBCs suspension. Our study shows that PMF plays an important role in in treating cardiovascular diseases with blood circulation disorders caused by narrowing microvascular due to stenosis. In order to extend our results to clinical applications, we need develop more indicators for hemorheologic characteristics such as viscosity and resistance, and need further experiment with diverse PMF condition such as pulse shape, pulse duration, or repetition rate.
机译:众所周知,由于血管内狭窄导致缺血性疾病和血液循环障碍导致的异常外周血循环。本研究的目的是研究脉冲磁场(PMF)对血管血液动力学特性的影响,其狭窄33%,直径为15μm,随着PMF强度和血细胞比容(HT)浓度的变化。使用聚二甲基硅氧烷(PDMS)制造狭窄的微血管通道。我们的PMF刺激器在102μs的过渡时间的最大强度为2700g,脉冲间隔为1Hz。对于HT改变的RBCS悬浮液,在PMF刺激之前和之后的各种强度为200〜2700g之前和之后检查红细胞(RBC)的血流和变形的变化。在狭窄的通道中,用于改善血液流动的阈值强度似乎是400g。 HT越高,粘度越高,RBC速度越慢,但在PMF刺激后,HT 5%和20%RBCS悬浮液中的RBCS运动总体增加超过9〜67%。我们的研究表明,PMF在治疗由于狭窄引起的血液循环疾病治疗心血管疾病中的重要作用。为了将我们的结果扩展到临床应用,我们需要开发更多的血液流学特性指标,例如粘度和阻力,并且需要进一步尝试不同的PMF条件,例如脉冲形状,脉冲持续时间或重复率。

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