Application of computational physics: Blood vessel constrictions and medical infuses

Suprijadi, M. Rendi, P. Subekti, S. Viridi
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引用次数: 2

Abstract

Application of computation in many fields are growing fast in last two decades. Increasing on computation performance helps researchers to understand natural phenomena in many fields of science and technology including in life sciences. Computational fluid dynamic is one of numerical methods which is very popular used to describe those phenomena. In this paper we propose moving particle semi-implicit (MPS) and molecular dynamics (MD) to describe different phenomena in blood vessel. The effect of increasing the blood pressure on vessel wall will be calculate using MD methods, while the two fluid blending dynamics will be discussed using MPS. Result from the first phenomenon shows that around 80% of constriction on blood vessel make blood vessel increase and will start to leak on vessel wall, while from the second phenomenon the result shows the visualization of two fluids mixture (drugs and blood) influenced by ratio of drugs debit to blood debit.
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计算物理的应用:血管收缩和医疗输液
近二十年来,计算在许多领域的应用都得到了迅速的发展。计算性能的提高有助于研究人员理解包括生命科学在内的许多科学技术领域的自然现象。计算流体力学是描述这些现象的常用数值方法之一。本文提出了运动粒子半隐式(MPS)和分子动力学(MD)来描述血管中的不同现象。血压升高对血管壁的影响将用MD方法计算,而两种流体的混合动力学将用MPS方法讨论。第一种现象的结果显示血管收缩80%左右使血管增大并开始在血管壁上渗漏,第二种现象的结果显示药物和血液两种液体混合物的可视化受药物与血液的比值的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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