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Effects of non-newtonian properties of blood flow on magnetic nanoparticle targeted drug delivery

机译:血流的非牛顿特性对磁性纳米粒子靶向药物输送的影响

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Objective(s): One applications of nanotechnology is in the area of medicine which is called nanomedicine. Primary instruments in nanomedicine can help us to detect diseases and used for drug delivery to inaccessible areas of human tissues. An important issue in simulating the motion of nanoparticles is modeling blood flow as a Newtonian or non-Newtonian fluid. Sometimes blood flow is simulated as a Newtonian fluid but actually blood has nature of non-Newtonian fluid. Simulation of targeted drug delivery and motion of nanoparticles in the blood flow as Newtonian and non-Newtonian fluid flow is investigated in this paperMaterials and Methods: In this paper, the blood flow is modeled as both Newtonian and non-Newtonian fluid and the effects of each case on the motion of nanoparticles in blood flow and targeted drug delivery is investigated. The flow is modeled with finite volume method. The particle modeled with discrete phase model.Results: Cross, Herschel-Bulkley and Power-law models are used for simulating the non-Newtonian blood flow. Numerical simulations show that trajectory of nanoparticle’s movement and the required time to pass the vessel by blood flow is variable for different models. According to obtained results, non-Newtonian Power-law and Herschel-Bulkley models have closely similar results but they have significant differences compared with Newtonian model. Conclusion: According to the results, it is preferred in the simulation to model blood flow as a non-Newtonian fluid and uses one of Herschel- Bulkley or Power-law models. Otherwise the simulation is far different from real phenomena.
机译:目标:纳米技术的一种应用是在医学领域,称为纳米医学。纳米医学中的主要仪器可以帮助我们发现疾病,并用于将药物输送到人体组织难以接近的区域。模拟纳米粒子运动的一个重要问题是将血流建模为牛顿流体或非牛顿流体。有时,血液流动被模拟为牛顿流体,但实际上血液具有非牛顿流体的性质。本文研究了在牛顿流体和非牛顿流体的情况下,纳米粒子在血流中的靶向药物递送和运动的模拟材料和方法:在本文中,将血流建模为牛顿流体和非牛顿流体,以及研究了纳米粒子在血流中运动和靶向药物输送的每种情况。用有限体积法对流进行建模。结果:使用Cross,Herschel-Bulkley模型和幂律模型来模拟非牛顿血流。数值模拟表明,对于不同的模型,纳米粒子的运动轨迹和通过血流通过血管所需的时间是可变的。根据获得的结果,非牛顿幂律模型和Herschel-Bulkley模型具有非常相似的结果,但与牛顿模型相比有显着差异。结论:根据结果,在模拟中最好将血液流动建模为非牛顿流体,并使用Herschel-Bulkley或幂律模型之一。否则,模拟与实际现象有很大不同。

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