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首页> 外文期刊>Journal of cardiovascular electrophysiology >Validation of a noninvasive measure of local myocardial repolarization in a conscious human model: adaptation of repolarization to changes in rate.
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Validation of a noninvasive measure of local myocardial repolarization in a conscious human model: adaptation of repolarization to changes in rate.

机译:在有意识的人类模型中无创测量局部心肌复极的有效性:复极对速率变化的适应性。

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INTRODUCTION: A commercial pacemaker sensor measure of the unipolar endocardial stimulus to T wave interval may accurately reflect changes in the monophasic action potential duration at 90% repolarization (APD90). This sensor system was used to study the kinetics of adaptation of repolarization duration to changes in heart rate in humans. METHODS AND RESULTS: Patients were studied using an external pacemaker capable of displaying all stimulus to T wave intervals for each paced beat. Right ventricular stimulation was delivered via the pacemaker and compared simultaneously to APD90. Steady-state pacing was simulated by 60 seconds of pacing at cycle lengths (CLs) 350 to 700 msec. Adaptation to a new ventricular rate was analyzed with a sudden 200-msec decrease in CL. The relation between repolarization measure and steady-state CL (n = 16) was linear with a slope of 0.16 and 0.19 for APD90 and stimulus to T wave interval, respectively (P = NS). The adaptation of both repolarization measures to a sudden change in rate were best modeled by a biexponential function. Stimulus to T wave interval exhibited a parallel course to APD90, and an analysis of normalized differences between APD90 and stimulus to T wave interval followed an approximately normal distribution, with 93.5% of the paired differences within 2 SD of the mean. CONCLUSION: A pacemaker sensor measure of stimulus to T wave interval accurately parallels APD90 during both steady-state and sudden changes in rate. Repolarization in human endocardium follows a linear relation to steady-state CL and adapts to a new rate with a biexponential function. This model represents a novel method for studying human cardiac repolarization.
机译:简介:商业起搏器传感器对T波间隔的单极心内膜刺激的测量可准确反映90%复极(APD90)时单相动作电位持续时间的变化。该传感器系统用于研究复极化持续时间适应人类心率变化的动力学。方法和结果:使用外部起搏器对患者进行了研究,该起搏器能够显示每个起搏的所有刺激到T波的间隔。右心室刺激通过起搏器传递,并同时与APD90进行比较。通过在350到700毫秒的周期长度(CL)下进行60秒的起搏来模拟稳态起搏。在CL突然下降200毫秒的情况下分析了对新心室率的适应性。复极化测量与稳态CL(n = 16)之间的关系是线性的,对于APD90和对T波间隔的刺激,斜率分别为0.16和0.19(P = NS)。最好通过双指数函数来模拟两种复极化措施对速率突然变化的适应。刺激到T波间隔显示出与APD90平行的过程,对APD90和刺激到T波间隔的归一化差异的分析遵循近似正态分布,成对差异的93.5%在平均值的2 SD之内。结论:起搏器传感器对T波间隔的刺激在稳态和速率突然变化期间均与APD90精确平行。人心内膜的复极化与稳态CL呈线性关系,并适应具有双指数函数的新速率。该模型代表了一种研究人类心脏复极的新方法。

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