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Autonomic Nervous System Effects on the Atrioventricular Conduction Time - Heart Period Relationship During Physical Exercise and Passive Recovery

机译:自主神经系统对体育锻炼和被动恢复过程中房室传导时间与心脏周期关系的影响

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During physical exercise and the following passive recovery, for a given heart period (i.e. RR interval), the atrioventricular conduction time (i.e. PR interval) is known to be lengthened during recovery (i.e. hysteresis phenomenon). We aimed to determine non-invasively the role of the autonomic nervous system on this hysteresis. 20 healthy participants (10 males, 10 females) performed, on separate days, two identical ramp exercise tests on a cycle ergometer to exhaustion (233±56W). Following exercise, participants remained either seated on the bike or adopted a supine position for 30 min. A 12-lead ECG was monitored to determine RR and PR intervals. An ad-hoc PR estimator was used to limit potential P wave detection error during intense exercise resulting from an overlapping T wave. A PR-RR hysteresis was observed in all participants, which area was> 3 times more pronounced (P<0.05) in the supine vs. the upright position. Our results showed that during recovery, the atrioventricular conduction time returned to a faster rate than the heart period toward resting values. This effect was greater in the supine position, when the vagal input to the heart is enhanced. Our findings suggest that the PR-RR hysteresis might be explained by a greater vagal input at the atrioventricular compared to the sinus node during recovery.
机译:在体育锻炼和随后的被动恢复过程中,对于给定的心脏周期(即RR间隔),已知房室传导时间(即PR间隔)在恢复过程中会延长(即磁滞现象)。我们旨在非侵入性地确定自主神经系统在此滞后作用。 20名健康参与者(10名男性,10名女性)分别在不同的日子进行了两次相同的坡道运动测试,以达到疲劳度(233±56W)。运动后,参与者要么坐在自行车上,要么仰卧30分钟。监测12导联心电图以确定RR和PR间隔。临时PR估计器用于限制剧烈运动期间由重叠的T波引起的潜在P波检测误差。在所有参与者中均观察到PR-RR滞后现象,仰卧位与直立位相比,该区域的显着性高3倍以上(P <0.05)。我们的结果表明,在恢复过程中,房室传导时间恢复到比心脏周期更快的速率,达到静止值。当向心脏的迷走神经输入增强时,在仰卧位的效果更大。我们的发现表明,与恢复期间的窦房结相比,房室的迷走神经输入可能解释了PR-RR滞后。

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