宫内生长受限导致左心室球形增加后QRS和t波环的变化:一项模拟研究

F. Bueno-Palomeque, Konstantinos A. Mountris, A. Mincholé, N. Ortigosa, E. Pueyo, P. Laguna
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引用次数: 2

摘要

体内测量证实,宫内生长限制引起的心血管重构在成年期表现为更多的球状脑室。据报道,由于诱导的重塑,QRS和t波环路的优势载体之间的角度显着改变。为了研究更球形的心室形状是否是导致这种改变的主要因素,我们在控制的人类双心室模型和通过变形控制模型获得的模型中进行了电生理模拟,以表示更球形的左心室(SLV)。包括跨壁心室异质性和浦肯野网络。计算12导联心电图,计算空间QRS和t波角。在SLV模型中,发现t波和xz平面之间的角度增加,显示出与体内研究报告相似的变化。然而,与IUGR成人的临床观察相反,对照组中QRS的优势载体与投射到xy平面上的t波环之间的夹角较低。其他临床结果也无法在我们的模拟中重现。我们的研究结果表明,更球形的左心室形状导致QRS和t波环路角度的变化,但需要进一步的研究来充分了解这些变化及其潜在的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes in QRS and T-wave Loops Subsequent to an Increase in Left Ventricle Globularity as in Intrauterine Growth Restriction: a Simulation Study
Cardiovascular remodeling induced by intrauterine growth restriction manifests in adulthood by more globular ventricles, as evidenced by in vivo measurements. The angle between the dominant vectors of the QRS and T-wave loops has been reported to be significantly altered as a result of the induced remodeling. To investigate whether the more globular ventricular shape was a major factor contributing to such alteration, we performed electrophysiological simulations in a human biventricular model for control and in a model obtained by deforming the control one to represent a more spherical left ventricle (SLV). Transmural ventricular heterogeneities and a Purkinje network were included. 12-lead ECGs were calculated, from which spatial QRS and T-wave angles were computed. The angle between the T-wave and the XZ-plane was found to increase in the SLV model, showing a variation similar to that reported in in vivo studies. However, the angle between the dominant vectors of the QRS and T-wave loops projected onto the XY-plane was lower for control, contrary to clinical observations in IUGR adults. Other clinical results could not be reproduced in our simulations either. Our findings suggest that a more globular left ventricular shape leads to changes in the angles of QRS and T-wave loops, but further research is needed to fully understand these changes and the underlying mechanisms.
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