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Cardiac electrophysiological adaptations in the equine athlete-Restitution analysis of electrocardiographic features

机译:心电图特征马运动员恢复分析中的心脏电生理适应

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Exercising horses uniquely accommodate 7-8-fold increases in heart rate (HR). The present experiments for the first time analysed the related adaptations in action potential (AP) restitution properties recorded by in vivo telemetric electrocardiography from Thoroughbred horses. The horses were subjected to a period of acceleration from walk to canter. The QRS durations, and QT and TQ intervals yielded AP conduction velocities, AP durations (APDs) and diastolic intervals respectively. From these, indices of active, lambda = QT/(QRS duration), and resting, lambda(0) = TQ/(QRS duration), AP wavelengths were calculated. Critical values of QT and TQ intervals, and of lambda and lambda(0) at which plots of these respective pairs of functions showed unity slope, were obtained. These were reduced by 38.9 +/- 2.7% and 86.2 +/- 1.8%, and 34.1 +/- 3.3% and 85.9 +/- 1.2%, relative to their resting values respectively. The changes in. were attributable to falls in QT interval rather than QRS duration. These findings both suggested large differences between the corresponding critical (129.1 +/- 10.8 or 117.4 +/- 5.6 bpm respectively) and baseline HRs (32.9 +/- 2.1 (n = 7) bpm). These restitution analyses thus separately identified concordant parameters whose adaptations ensure the wide range of HRs over which electrophysiological activation takes place in an absence of heart block or arrhythmias in equine hearts. Since the horse is amenable to this in vivo electrophysiological analysis and displays a unique wide range of heart rates, it could be a novel cardiac electrophysiology animal model for the study of sudden cardiac death in human athletes.
机译:锻炼马匹以心率(HR)增加7-8倍。本实验首次分析了从纯种马的体内遥测心电图记录的动作潜力(AP)恢复性质中的相关适应。从步行到慢跑时,马匹受到一段时间的加速度。 QRS持续时间和QT和TQ间隔分别产生AP传导速度,AP持续时间(APDS)和舒张间隔。从这些,有效,lambda = qt /(qrs持续时间)的指标,并计算λ(0)= tq /(qrs持续时间),ap波长。获得了QT和TQ间隔的临界值,以及λ和λ(0),在该λ和λ(0)上,在这些各自的函数对中显示统一斜率。这些分别减少了38.9 +/- 2.7%和86.2 +/- 1.8%和34.1 +/- 3.3%和85.9 +/- 1.2%,分别分别恢复值。变化。归因于QT间隔而不是QRS持续时间。这些发现都在相应的关键(分别为129.1 +/- 10.8或117.4 +/- 5.6 bpm之间建议略有差异和基线HRS(32.9 +/- 2.1(n = 7)BPM)。因此,这些恢复原状分析了单独确定的协调参数,其适应确保在没有马心中的心脏嵌段或心律失常的情况下发生电生理活化的各种HR。由于马在体内电生理学分析中致力于这一点,并且显示出独特的全面的心脏速率,因此可以是人类运动员突然心脏死亡的新型心脏电生理学动物模型。

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