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Exercise and diving two conflicting stimuli influencing cardiac vagal tone in man.

机译:运动和潜水是影响男性迷走神经张力的两种相互冲突的刺激。

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摘要

1. In order to increase our understanding of the central regulation of human cardiac vagal motoneurones we studied the interaction between two opposing influences on cardiac vagal tone, one related to diving and the other to exercise. 2. The heart rate response to cooling the face (0 degrees C, trigeminal cutaneous receptor stimulation, TGS) and to a brief isometric muscle contraction was studied in fourteen healthy young adults (8 males, 6 females) during controlled ventilation at supine rest. 3. Fluctuations in R-R interval were quantified by spectral analysis. In addition the absolute values of R-R intervals occurring in any one of ten arbitrary phases of a respiratory cycle were measured over thirty to sixty cycles to give a graph of the changes in R-R interval throughout a respiratory cycle. 4. TGS produced a significant decrease in heart rate (-21 +/- 2 beats min-1 in females, -19 +/- 2 beats min-1 in males; means +/- S.E.M.). In addition the autospectral plots of R-R interval variability showed that during TGS there was a significant increase both in the high frequency peak and in the low frequency peak in all subjects. These data suggested that in these experiments the bradycardia of TGS was due to an increase in cardiac vagal tone. 5. Voluntary isometric contractions at 40 and 60% of maximum (40% MVC, 60% MVC) were timed to occur early in expiration or early in inspiration. Analysis of the changes in R-R interval produced by these contractions was confined to the respiratory cycle in which they were initiated. The early onset of these changes was interpreted as showing a decrease in cardiac vagal tone. 6. The 40% MVC and 60% MVC increased heart rate significantly within one respiratory cycle with maximum effects having a mean of 9.5 +/- 3 and 11 +/- 3 beats min-1, respectively. When isometric muscle contraction was initiated during TGS the 60% MVC but not the 40% MVC was able to significantly decrease R-R interval and hence increase heart rate. 7. It is concluded that the TGS excitatory inputs and the muscle inhibitory inputs to cardiac vagal neurones do not interact by one input gating the other early in the pathway but more probably by a process of algebraic summation closer to the cardiac vagal neurone.
机译:1.为了增进我们对人类心脏迷走神经运动神经元的中央调节的了解,我们研究了对心脏迷走神经张力的两种相反影响之间的相互作用,一种与潜水有关,另一种与运动有关。 2.研究了十四名健康的年轻人(8例男性,6例女性)在仰卧休息时控制通气期间对脸部降温(0度,三叉戟皮肤受体刺激,TGS)和短暂等距肌肉收缩的心率响应。 3.通过光谱分析定量R-R间隔的波动。另外,在三十至六十个循环中测量出现在呼吸循环的十个任意阶段中的任一阶段中的R-R间隔的绝对值,以给出整个呼吸循环中R-R间隔的变化图。 4. TGS使心率显着下降(女性为-21 +/- 2次min-1,男性为-19 +/- 2次min-1;平均值为+/- S.E.M.)。此外,R-R区间变异性的自动光谱图显示,在TGS期间,所有受试者的高频峰和低频峰均显着增加。这些数据表明,在这些实验中,TGS的心动过缓是由于心脏迷走神经张力增加所致。 5.自愿等距收缩最大和40%(MVC为40%,MVC为60%)的时间是在呼气早期或吸气早期进行。由这些收缩产生的R-R间隔的变化的分析仅限于它们开始的呼吸周期。这些变化的早期发作被解释为显示心脏迷走神经张力降低。 6. 40%MVC和60%MVC在一个呼吸周期内可显着提高心率,最大作用分别为min-1 9.5 +/- 3和11 +/- 3次心跳。当在TGS期间开始等距肌肉收缩时,60%的MVC而非40%的MVC能够显着缩短R-R间隔并因此增加心率。 7.得出的结论是,迷走神经神经元的TGS兴奋性输入和肌肉抑制输入在路径的早期不会通过一个输入与另一个输入进行交互,而更可能是通过更靠近心脏迷走神经元的代数求和过程进行交互。

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