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Magnetic Field Analysis of Magnetic Fluid Suspension Axial Blood Pump and its Effect on Red Blood Cells

机译:磁悬浮液轴向血泵的磁场分析及其对红细胞的影响

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At present, the analysis of internal physical factors of blood pumping blood and the evaluation method of hemolysis performance of blood pump mainly consider the shear stress of red blood cells and the exposure time under shear force. However, the internal magnetic field strength of the blood pump is also one of the factors influencing the hemolysis performance of the blood pump. In this paper, the magnetic field generated by the magnetic suspension of the magnetic suspension axial flow blood pump is analyzed, and the average internal magnetic field strength of the blood pump is calculated to be 0.145T. It was verified by experiments that the blood was irradiated with the same equivalent magnetic field intensity for a certain period of time, and the morphology of red blood cells was not observed to change significantly, and the number of damage did not increase significantly. The research shows that the magnetic field intensity produced by the designed magnetic fluid suspension axial blood pump has little damage to red blood cells. It can be considered that the design of magnetic fluid suspension structure of the axial blood pump is reasonable from the perspective of the effect of magnetic field on red blood cells and blood injury.
机译:目前,对血液的内部物理因素的分析和对血液泵溶血性能的评价方法主要考虑红细胞的剪切应力和剪切力下的暴露时间。然而,血泵的内部磁场强度也是影响血泵溶血性能的因素之一。本文分析了磁悬浮轴流血泵的磁悬浮产生的磁场,计算得出该血泵的平均内部磁场强度为0.145T。通过实验证实,在相同的时间段内以相同的等效磁场强度辐照血液,未观察到红细胞的形态发生显着变化,损伤次数也未显着增加。研究表明,设计的磁悬浮液轴向血泵产生的磁场强度对红细胞的损害很小。从磁场对红细胞和血液损伤的影响的角度来看,可以认为轴向血泵的磁性流体悬浮结构的设计是合理的。

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