首页> 美国卫生研究院文献>The Journal of Physiology >Effects of pulse frequency on single-unit baroreceptor activity during sine-wave and natural pulses in dogs.
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Effects of pulse frequency on single-unit baroreceptor activity during sine-wave and natural pulses in dogs.

机译:脉冲频率对狗正弦波和自然脉冲期间单单位压力感受器活动的影响。

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摘要

1. Previous studies using sine-wave pulses have shown that changes in pulse frequency do not alter single-unit activity per unit time. Since baroreceptor activity is phasic with most of the activity occurring in systole, we reasoned that the lack of effect of pulse frequency is due to the associated reciprocal change in duration of systole with sine-wave pulses. Therefore, we tested the hypothesis that change in frequency using natural arterial pulses alters baroreceptor unit activity per unit time. 2. In chloralose-anaesthetized dogs the isolated carotid sinus was connected to an electromagnetic pressure converter driven by a voltage generator that controlled pulse pressure and sine-wave pulse rate. To generate a natural pulse the converter was driven by the output from the pressure channel used to record arterial pressure. Systolic and diastolic pressures were maintained constant by a pressurized air source and an adjustable control on the voltage generator. The rate of natural pulses was decreased by electrical stimulation of the peripheral right vagus nerve which slowed the heart rate of the dog. 3. Decreases in sine-wave rate by approximately 73 pulses/min (from 156 +/- 2 to 83 +/- 1 pulses/min) at a mean pressure of 114 +/- 8 mmHg (n = 13) did not alter activity per unit time (28 +/- 3 vs. 29 +/- 3 spikes/s). 4. In contrast, decreases in natural pulse rate by an average of 78 pulses/min (from 182 +/- 7 to 104 +/- 15 pulses/min) at a comparable mean pressure (104 +/- 7 mmHg) (n = 9) decreased activity per unit time by 28% from 32 +/- 4 to 23 +/- 4 spikes/s (P less than 0.05). Similar findings were observed in five of six single units using an intact (normally perfused) carotid sinus preparation in dogs with heart block and cardiac pacing. 5. The results indicate that a change in natural pulse rate is an important determinant of single-unit baroreceptor activity.
机译:1.先前使用正弦波脉冲的研究表明,脉冲频率的变化不会改变单位时间内的单位活动。由于压力感受器活动是阶段性的,大部分活动发生在心脏收缩期,因此我们认为,脉冲频率缺乏影响是由于正弦波脉冲引起的收缩期持续时间的倒数变化。因此,我们检验了使用自然动脉脉冲改变频率会改变单位时间内压力感受器单位活动的假说。 2.在经氯醛糖麻醉的狗中,孤立的颈动脉窦连接到由电压发生器驱动的电磁压力转换器,该电压发生器控制脉冲压力和正弦波脉冲率。为了产生自然脉冲,转换器由用于记录动脉压的压力通道的输出驱动。收缩压和舒张压通过加压空气源和电压发生器的可调控制装置保持恒定。电刺激周围的右迷走神经会降低自然脉搏的频率,从而减慢狗的心律。 3.在114 +/- 8 mmHg(n = 13)的平均压力下,正弦波速率降低了大约73脉冲/分钟(从156 +/- 2降低到83 +/- 1脉冲/分钟),并没有改变每单位时间的活动性(28 +/- 3与29 +/- 3峰值/秒)。 4.相比之下,在相当的平均压力(104 +/- 7 mmHg)下,自然脉冲率平均降低78脉冲/分钟(从182 +/- 7降至104 +/- 15脉冲/分钟)(n = 9)单位时间的活动度从32 +/- 4峰值/秒降低到28 +/- 4峰值/秒,降低了28%(P小于0.05)。在患有心脏传导阻滞和心脏起搏的狗中,使用完整(正常灌注)的颈动脉窦制剂在六个单一单元中的五个中观察到了类似的结果。 5.结果表明,自然脉搏率的变化是单单位压力感受器活性的重要决定因素。

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