Suppr超能文献

心肌纤维方向对心外膜电位的影响。

Effect of myocardial fiber direction on epicardial potentials.

作者信息

Taccardi B, Macchi E, Lux R L, Ershler P R, Spaggiari S, Baruffi S, Vyhmeister Y

机构信息

Nora Eccles Harrison Cardiovascular Research and Training Institute, Utah University Medical School, Salt Lake City.

出版信息

Circulation. 1994 Dec;90(6):3076-90. doi: 10.1161/01.cir.90.6.3076.

Abstract

BACKGROUND

Understanding the relations between the architecture of myocardial fibers, the spread of excitation, and the associated ECG signals is necessary for addressing the forward problem of electrocardiography, that is, predicting intracardiac and extracardiac ECGs from known intracardiac activity. So far, these relations have been studied experimentally only in small myocardial areas. In this study, we tested the hypothesis that potential distributions measured over extensive epicardial regions during paced beats reflect the direction of superficial and intramural fibers through which excitation is spreading in both the initial and later stages of ventricular excitation. We also tried to establish whether the features of the epicardial potential distribution that correlate with fiber direction vary as a function of pacing site, intramural pacing depth, and time elapsed after the stimulus. An additional purpose was to compare measured epicardial potentials with recently published numerical simulations depicting the three-dimensional spread of excitation in the heart muscle and the associated potential fields.

METHODS AND RESULTS

The hearts of 18 mongrel dogs were exposed and 182 to 744 unipolar electrograms were recorded from epicardial electrode arrays (2.3 x 3.0 to 6.5 x 6.5 cm). Hearts were paced at various intramural depths through an intramural needle. The overall number of pacing sites in 18 dogs was 241. Epicardial potential distributions, electrographic waveforms, and excitation time maps were displayed, and fiber directions in the ventricular wall underlying the electrodes were determined histologically. During the early stages of ventricular excitation, the position of the epicardial maxima and minima revealed the orientation of myocardial fibers near the pacing site in all cases of epicardial and intramural pacing and in 60% of cases of endocardial or subendocardial pacing. During later stages of propagation, the rotation and expansion of the positive areas correlated with the helical spread of excitation through intramurally rotating fibers. Marked asymmetry of potential patterns probably reflected epicardial-endocardial obliqueness of intramural fibers. Multiple maxima appeared in the expanding positive areas.

CONCLUSIONS

For 93% of pacing sites, results verified our hypothesis that epicardial potential patterns elicited by ventricular pacing reflect the direction of fibers through which excitation is spreading during both the initial and later stages of propagation. Epicardial potential distributions provided information on the site of origin and subsequent helical spread of excitation in an epicardial-endocardial, endocardial-epicardial, or double direction. Results were in agreement with previously published numerical simulations except for the asymmetry and fragmentation of the positive areas.

摘要

背景

理解心肌纤维结构、兴奋传播以及相关心电图信号之间的关系,对于解决心电图的正向问题(即根据已知的心内活动预测心内和心外心电图)是必要的。到目前为止,这些关系仅在小面积心肌区域进行过实验研究。在本研究中,我们检验了以下假设:在起搏搏动期间在广泛的心外膜区域测量的电位分布反映了表层和壁内纤维的方向,兴奋在心室兴奋的初始和后期阶段通过这些纤维传播。我们还试图确定与纤维方向相关的心外膜电位分布特征是否随起搏部位、壁内起搏深度以及刺激后经过的时间而变化。另一个目的是将测量的心外膜电位与最近发表的描述心肌中兴奋的三维传播及相关电位场的数值模拟进行比较。

方法与结果

暴露18只杂种狗的心脏,从心外膜电极阵列(2.3×3.0至6.5×6.5厘米)记录182至744个单极电图。通过壁内针在不同壁内深度对心脏进行起搏。18只狗的起搏部位总数为241个。显示心外膜电位分布、电图波形和兴奋时间图,并通过组织学确定电极下方心室壁内的纤维方向。在心室兴奋的早期阶段,在心外膜和壁内起搏的所有情况下以及在心内膜或心内膜下起搏的60%的情况下,心外膜最大值和最小值的位置揭示了起搏部位附近心肌纤维的方向。在传播的后期阶段,正区域的旋转和扩展与兴奋通过壁内旋转纤维的螺旋传播相关。电位模式的明显不对称可能反映了壁内纤维的心外膜 - 心内膜倾斜度。在扩展的正区域出现多个最大值。

结论

对于93%的起搏部位,结果验证了我们的假设,即心室起搏引起的心外膜电位模式反映了兴奋在传播的初始和后期阶段通过其传播的纤维方向。心外膜电位分布提供了关于兴奋在心外膜 - 心内膜、心内膜 - 心外膜或双向起源部位及随后螺旋传播的信息。除了正区域的不对称和碎片化外,结果与先前发表的数值模拟一致。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验