通过近似沃默斯利流,纳米颗粒在血流中的动力学

L. H. Camargo Casallas, Jaime Francisco Pantoja Benavides, Diego Julián Rodríguez Patarroyo
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引用次数: 0

摘要

癌症是当今世界最重要的发病和死亡因素之一。出于这些原因,已经努力优化肿瘤学领域专家使用的治疗方法。主要困难之一是缺乏能够表征治疗效果的数学和统计模型;其中一个创新的治疗趋势是使用磁性纳米颗粒,这些纳米颗粒被掺入血液中,用于诊断或将药物输送到受影响的区域。本文介绍了估算R3中函数特定情况下的局部极小值的过程——由参数r和t定义——这允许对纳米颗粒的动力学进行建模。
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Kinetics of nanoparticles in sanguinean torrent by approximation, Womersley flow
Nowadays, cancer is one of the most important morbidity and mortality factors in the world. For these reasons, efforts have been made to optimize the treatments that are used by specialists in the oncology area. One of the main difficulties is the lack of mathematical and statistical models that allow to characterize the performance of the treatments; one of these innovative treatment trends consists of the use of magnetic nanoparticles which are incorporated into the bloodstream either in order to diagnose or transport medications to the affected areas. This paper presents the process of estimating local minimums for a particular case of a function in R3 –defined by parameters r and t– which allows modeling the kinetics of nanoparticles.
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