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Collection of magnetic particles from synovial fluid using Nd-Fe-B micromagnets

机译:使用ND-Fe-B微量磁带从滑膜流体收集磁性颗粒

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In this paper, the collection of magnetic particles from synovial fluid using Nd-Fe-B micromagnets is quantitatively studied to determine the influence of fluid viscosity and magnet geometry on the velocity distribution and collection rate. Magnetic capture is validated in highly viscous fluids, such as bovine synovial fluid (η~ 1 Pa·s). A first-order theoretical model has been developed to predict the particle motion, as well as a numerical multiphysics model. Both models exhibit good agreement with in vitro experimental magnetic collection results. The velocity of the magnetic particles is shown to be inversely proportional to fluid viscosity, and two magnetic structures are compared in term of collection efficiency: a cylindrical Nd-Fe-B permanent magnet and a laser-machined conical Nd-Fe-B permanent magnet.
机译:在本文中,定量地研究了使用ND-Fe-B微米的滑膜流体的磁性颗粒的集合,以确定流体粘度和磁体几何形状对速度分布和收集率的影响。磁性捕获在高粘度的流体中验证,例如牛滑膜液(η〜1Pa·s)。已经开发了一阶理论模型来预测粒子运动,以及数值多体型模型。两种模型与体外实验磁性收集结果表现出良好的一致性。磁性颗粒的速度显示成与流体粘度成反比,并在收集效率期间比较两个磁性结构:圆柱形ND-Fe-B永磁体和激光加工锥形Nd-Fe-B永磁体。

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