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等效T波发生器的相对偶极行为:与兔心脏心室兴奋的定量比较。

Relative dipolar behavior of the equivalent T wave generator: quantitative comparison with ventricular excitation in the rabbit heart.

作者信息

Brody D A, Mirvis D M, Ideker R E, Cox J W, Keller F W, Larsen R A, Bandura J P

出版信息

Circ Res. 1977 Mar;40(3):263-8. doi: 10.1161/01.res.40.3.263.

Abstract

We studied the relative dipolar and nondipolar content of signal energy throughout ventricular excitation and recovery in 34 isolated, perfused rabbit hearts, suspended in an electrolyte-filled spherical chamber. Computer-processed signals were derived from 20 evenly spaced tank-surface electrodes, and a single, moving, equivalent cardiac dipole generator was optimally fitted to the recorded potentials for each 1-msec sampling interval. Superimposed, time-based plots of signal energy for the 34 preparations showed ventricular excitation to be strikingly more nondipolar than was recovery. In terms of the summed square ratio of nondipolar residual energies, overall nondipolarity of QRS exceed that of ST-T by 41%. Furthermore, the maximum instantaneous ratio during QRS was considerably greater than during the ST-T. Evaluation of paired differences, comparing nondipolar behavior throughout QRS with all of ST-T, proved highly significant (P less than .005). We also found that in contrast to the considerable mobility exhibited by the equivalent QRS dipole, the ST-T dipole locus remained nearly stationary during most of ventricular recovery. Presumably because repolarization is temporally and spatially a relatively diffuse process, it may generate electrical fields which are notably more dipolar than those caused by depolarization.

摘要

我们研究了34个悬浮于充满电解质的球形腔室中的离体灌注兔心脏在心室兴奋和恢复过程中信号能量的相对偶极和非偶极成分。计算机处理的信号来自20个均匀分布在腔室表面的电极,并且在每个1毫秒采样间隔内,将单个移动的等效心脏偶极发生器最佳地拟合到记录的电位上。对34个标本的基于时间叠加的信号能量图显示,心室兴奋时的非偶极成分比恢复时明显更多。就非偶极残余能量的平方和比值而言,QRS波群的总体非偶极性超过ST-T段41%。此外,QRS波群期间的最大瞬时比值明显大于ST-T段期间。对QRS波群全程与整个ST-T段的非偶极行为进行配对差异评估,结果显示差异具有高度显著性(P小于0.005)。我们还发现,与等效QRS波偶极表现出的显著移动性相反,在心室恢复的大部分时间里,ST-T偶极轨迹几乎保持静止。推测是因为复极化在时间和空间上是一个相对弥散的过程,它可能产生比去极化所引起的电场明显更具偶极性的电场。

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