Modelling of the carotid artery

R. A. Espinosa Medina, Hermes Darío Fuentes Muñoz
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引用次数: 0

Abstract

This study presents a modelling for the carotid artery that allows to analyze the theoretical behavior of pressure, flow and arterial volume in it, from the variation of both physical and physiological characteristics, such as: the thickness and length of the vessel blood, the viscosity and density of blood; determinants in the study of the normal functionality of the artery. The model of the arterial vessel –an adaptation of the Windkessel model of three elements, reported by Westerhof and Stergiopulos–, consists of an electrical circuit composed of passive RLC elements. The arterial segment was analyzed by mathematical and computational tools, relating Poiseuille's laws and electric laws. The pressure, flow and volume curves were obtained when changes occurred in the measurable characteristics of the carotid artery, in order to facilitate the medical interpretation of possible pathologies related to these changes.
颈动脉模型
本研究提出了一个颈动脉模型,可以从物理和生理特征的变化来分析颈动脉的压力、流量和动脉体积的理论行为,例如:血管的厚度和长度、血液的粘度和密度;动脉正常功能研究中的决定因素。该动脉血管模型——由Westerhof和Stergiopulos报道的三元素Windkessel模型改编而来——由一个由被动RLC元件组成的电路组成。运用数学和计算工具,结合泊泽维尔定律和电学定律对动脉段进行分析。当颈动脉的可测量特性发生变化时,获得压力、流量和体积曲线,以便于医学解释与这些变化相关的可能病理。
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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