van Oosterom Adriaan
Department of Medical Physics, University of Nijmegen, Nijmegen, The Netherlands.
J Cardiovasc Electrophysiol. 2003 Oct;14(10 Suppl):S180-7. doi: 10.1046/j.1540.8167.90309.x.
The shapes of the T waves as observed in different leads placed on the thorax are very similar. The dominant T wave is introduced as a means to characterize this general signal shape. Its relationship to the transmembrane potentials of cardiac myocytes is discussed.
The source description of a biophysical model that previously was shown to yield realistic T waveforms was analyzed in order to exploit its relation to the transmembrane potentials of the cardiac myocytes at the surface bounding the myocardium. The product of this analysis is the dominant T wave: a waveform that describes the slope of the transmembrane potential. It is shown that the dominant T wave can be estimated easily from the matrix of sampled lead potentials. The timing of its peak reveals the mean of the repolarization times of the involved transmembrane potentials. The amplitude of the peak is the maximum downward slope of the transmembrane potential. This amplitude is independent of the volume conductor effects of the tissues surrounding the heart. The estimate of the dominant T wave retains this property.
The dominant T wave reflects the derivative of the recovery phase of a generalized transmembrane potential. Its amplitude is independent of the volume conductor properties of the tissues surrounding the heart. This is a unique feature that greatly facilitates the interpretation and application of the other signal features of the dominant T wave.
放置在胸部不同导联上观察到的T波形状非常相似。引入主导T波作为表征这种一般信号形状的一种方式。讨论了其与心肌细胞跨膜电位的关系。
分析了一个先前被证明能产生逼真T波波形的生物物理模型的源描述,以利用其与心肌表面边界处心肌细胞跨膜电位的关系。该分析的结果是主导T波:一种描述跨膜电位斜率的波形。结果表明,主导T波可以很容易地从采样导联电位矩阵中估计出来。其峰值的时间揭示了所涉及跨膜电位复极时间的平均值。峰值的幅度是跨膜电位的最大向下斜率。该幅度与心脏周围组织的容积导体效应无关。主导T波的估计保留了这一特性。
主导T波反映了广义跨膜电位恢复阶段的导数。其幅度与心脏周围组织的容积导体特性无关。这是一个独特的特征,极大地便于对主导T波的其他信号特征进行解释和应用。