首页> 外文期刊>Acta physiologica Scandinavica >Heart rate variability in healthy volunteers during normobaric and hyperbaric hyperoxia.
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Heart rate variability in healthy volunteers during normobaric and hyperbaric hyperoxia.

机译:在正常人和常压高氧血症期间,健康志愿者的心率变异性。

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Inhaled supranormal partial pressure of oxygen induces bradycardia and peripheral vasoconstriction. The exact mechanism of the decreasing heart rate is not clear, but the autonomic nervous system is partly involved. In the present study the role of the autonomic nervous system in hyperoxic bradycardia was evaluated by using the power spectral analysis of heart rate variability. Ten healthy volunteers participated in four experiments: (i) hyperbaric oxygen treatment (100% oxygen at 2.5 ATA), (ii) hyperbaric air treatment (O2 21% at 2.5 ATA), (iii) oxygen treatment at normal pressure (100% O2, 1 ATA) and (iv) air breathing at normal pressure (21% O2, 1 ATA). During the experiments, ECG was registered and subjected to power spectral analysis. The volunteers rated their perception of temperature, ear discomfort, sweating and excitement on a visual analogue scale. Statistical comparison of the results of the four trials was conducted with a two-way ANOVA for repeated measurements. Heart rate decreased during all interventions, but there were no statistically significant differences between the sessions. High frequency variability of heart rate variability and Hayano's index of HF power increased and LF/HF ratio decreased with increasing partial pressure of oxygen. Our results suggest, that normobaric and hyperbaric hyperoxia increase parasympathetic influence in the regulation of the heart.
机译:吸入超常氧分压可引起心动过缓和周围血管收缩。降低心率的确切机制尚不清楚,但部分涉及自主神经系统。在本研究中,通过使用心率变异性的功率谱分析评估了自主神经系统在高氧性心动过缓中的作用。十名健康志愿者参加了四个实验:(i)高压氧治疗(2.5 ATA时100%的氧气),(ii)高压空气处理(2.5 ATA时21%的氧气),(iii)常压下的氧气处理(100%O2 ,1 ATA)和(iv)常压下的空气呼吸(21%O2,1 ATA)。在实验过程中,对心电图进行了注册并进行了功率谱分析。志愿者以视觉模拟量表评估他们对温度,耳朵不适,出汗和兴奋的感觉。使用双向方差分析对四个试验的结果进行统计学比较,以进行重复测量。在所有干预期间,心率均下降,但各次之间无统计学差异。随着氧分压的增加,心率变异性的高频变异性和Hayano的HF功率指数增加而LF / HF比降低。我们的研究结果表明,常压和高压氧过多会增加副交感神经对心脏调节的影响。

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