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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Origins of the impedance change in impedance cardiography by a three-dimensional finite element model
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Origins of the impedance change in impedance cardiography by a three-dimensional finite element model

机译:三维有限元模型在阻抗心动图中阻抗变化的起因

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A three-dimensional finite-element model of the thorax and neck using eight-node trilinear hexahedron elements was constructed to investigate the impedance change associated with various physiological events during systole. A three-dimensional finite-element code was developed to solve the generalized Laplace equation with Dirichlet and homogeneous Neumann boundary conditions. The current in each element as well as potential at each node was calculated. The results suggest that an approximately linear relationship exists between the impedance change and blood volume change in the aorta. This is a promising result since the relationship helps explain the correlation between impedance cardiography and invasive techniques. Impedance changes due to blood volume changes in the aorta and ventricles, the lung-resistivity change, and the blood-resistivity change were calculated for standard impedance electrode configurations.
机译:建立了一个使用八节点三线性六面体元素的胸部和颈部三维有限元模型,以研究与心脏收缩过程中各种生理事件相关的阻抗变化。开发了三维有限元代码以求解具有Dirichlet和齐次Neumann边界条件的广义Laplace方程。计算每个元素中的电流以及每个节点上的电势。结果表明在主动脉的阻抗变化和血容量变化之间存在近似线性关系。这是一个有希望的结果,因为这种关系有助于解释阻抗心动图和侵入性技术之间的相关性。对于标准阻抗电极配置,计算了由于主动脉和心室中的血容量变化,肺电阻率变化和血液电阻率变化而引起的阻抗变化。

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