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量化部分厚度缺血简化双域模型中输入参数不确定性的影响。

Quantifying the effect of uncertainty in input parameters in a simplified bidomain model of partial thickness ischaemia.

机构信息

Queensland Micro- and Nanotechnology Centre and School of Natural Sciences, Griffith University, Nathan, QLD, 4111, Australia.

Department of Physics and Astronomy, University of Sheffield, Sheffield, UK.

出版信息

Med Biol Eng Comput. 2018 May;56(5):761-780. doi: 10.1007/s11517-017-1714-y. Epub 2017 Sep 20.

Abstract

Reduced blood flow in the coronary arteries can lead to damaged heart tissue (myocardial ischaemia). Although one method for detecting myocardial ischaemia involves changes in the ST segment of the electrocardiogram, the relationship between these changes and subendocardial ischaemia is not fully understood. In this study, we modelled ST-segment epicardial potentials in a slab model of cardiac ventricular tissue, with a central ischaemic region, using the bidomain model, which considers conduction longitudinal, transverse and normal to the cardiac fibres. We systematically quantified the effect of uncertainty on the input parameters, fibre rotation angle, ischaemic depth, blood conductivity and six bidomain conductivities, on outputs that characterise the epicardial potential distribution. We found that three typical types of epicardial potential distributions (one minimum over the central ischaemic region, a tripole of minima, and two minima flanking a central maximum) could all occur for a wide range of ischaemic depths. In addition, the positions of the minima were affected by both the fibre rotation angle and the ischaemic depth, but not by changes in the conductivity values. We also showed that the magnitude of ST depression is affected only by changes in the longitudinal and normal conductivities, but not by the transverse conductivities.

摘要

冠状动脉血流量减少可导致心肌组织损伤(心肌缺血)。虽然检测心肌缺血的一种方法涉及心电图 ST 段的变化,但这些变化与心内膜下缺血之间的关系尚未完全清楚。在这项研究中,我们使用考虑到传导纵向、横向和垂直于心脏纤维的双域模型,在心室组织的平板模型中模拟了 ST 段心外膜电位,其中有一个中央缺血区域。我们系统地量化了输入参数、纤维旋转角度、缺血深度、血液电导率和六个双域电导率的不确定性对输出的影响,这些输出特征描述了心外膜电位分布。我们发现,三种典型的心外膜电位分布(一个在中央缺血区域的最小值、一个最小三极和两个在中央最大值两侧的最小值)都可能在广泛的缺血深度范围内发生。此外,最小值的位置受到纤维旋转角度和缺血深度的影响,但不受电导率值变化的影响。我们还表明,ST 段压低的幅度仅受纵向和正常电导率的影响,而不受横向电导率的影响。

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