Magnano Anthony R, Holleran Steve, Ramakrishnan Rajasekhar, Reiffel James A, Bloomfield Daniel M
Department of Medicine, Division of Cardiology, Columbia University College of Physicians and Surgeons, New York, New York 10032, USA.
Pacing Clin Electrophysiol. 2004 Nov;27(11):1484-92. doi: 10.1111/j.1540-8159.2004.00665.x.
Prolonged repolarization time, an important contributor to the pathogenesis of ventricular arrhythmias, is usually identified by a long QT interval (QT) on the ECG but is frequently confounded by the presence of a U wave. The physiological basis and clinical relevance of the U wave is unresolved. To better understand the relationship between the T and U waves, this study examined their behavior during nonresting autonomic conditions. Twenty-five healthy subjects were evaluated during sympathomimetic infusion with isoproterenol and vagal inhibition with atropine. As heart rate (HR) increased in response to isoproterenol, the QU interval (QU) decreased by an eightfold greater extent than QT. Furthermore, a marked increase in U wave amplitude and decrease in T wave amplitude were observed with T and U wave fusion at higher HRs. During atropine, QU decreased by only a threefold greater extent than QT, T and U wave amplitudes were affected only minimally, and T-U wave fusion was not observed. These results demonstrate that sympathomimetic stimulation causes striking alterations in the timing and amplitude of U waves that differ from effects on the T wave. These effects are not observed during vagal inhibition. Thus, the U wave represents a component of cardiac repolarization that is electrocardiographically and physiologically distinct from the T wave with a unique response to sympathomimetic stimulation.
复极时间延长是室性心律失常发病机制的一个重要因素,通常通过心电图上的长QT间期(QT)来识别,但常常因U波的存在而混淆。U波的生理基础和临床相关性尚未明确。为了更好地理解T波和U波之间的关系,本研究考察了它们在非静息自主神经状态下的表现。对25名健康受试者在静脉输注异丙肾上腺素进行交感神经兴奋及静脉注射阿托品进行迷走神经抑制时进行了评估。随着心率(HR)因异丙肾上腺素而增加,QU间期(QU)的缩短幅度比QT间期大8倍。此外,在较高心率时观察到U波振幅显著增加,T波振幅减小,且T波与U波融合。在使用阿托品期间,QU间期的缩短幅度仅比QT间期大3倍,T波和U波振幅仅受到轻微影响,且未观察到T波与U波融合。这些结果表明,交感神经兴奋刺激会导致U波在时间和振幅上发生显著改变,这与对T波的影响不同。在迷走神经抑制期间未观察到这些效应。因此,U波代表了心脏复极的一个组成部分,在心电图和生理上与T波不同,对交感神经兴奋刺激有独特的反应。