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Dynamic interactions between arterial pressure and sympathetic nerve activity: role of arterial baroreceptors.

机译:动脉压和交感神经活动之间的动态相互作用:动脉压力感受器的作用。

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The role of arterial baroreceptors in controlling arterial pressure (AP) variability through changes in sympathetic nerve activity was examined in conscious rats. AP and renal sympathetic nerve activity (RSNA) were measured continuously during 1-h periods in freely behaving rats that had been subjected to sinoaortic baroreceptor denervation (SAD) or a sham operation 2 wk before study (n = 10 in each group). Fast Fourier transform analysis revealed that chronic SAD did not alter high-frequency (0.75-5 Hz) respiratory-related oscillations of mean AP (MAP) and RSNA, decreased by approximately 50% spectral power of both variables in the midfrequency band (MF, 0.27-0.74 Hz) containing the so-called Mayer waves, and induced an eightfold increase in MAP power without altering RSNA power in the low-frequency band (0.005-0.27 Hz). In both groups of rats, coherence between RSNA and MAP was maximal in the MF band and was usually weak at lower frequencies. In SAD rats, the transfer function from RSNA to MAP showedthe characteristics of a second-order low-pass filter containing a fixed time delay ( approximately 0.5 s). These results indicate that arterial baroreceptors are not involved in production of respiratory-related oscillations of RSNA but play a major role in the genesis of synchronous oscillations of MAP and RSNA at the frequency of Mayer waves. The weak coupling between slow fluctuations of RSNA and MAP in sham-operated and SAD rats points to the interference of noise sources unrelated to RSNA affecting MAP and of noise sources unrelated to MAP affecting RSNA.
机译:在清醒大鼠中检查了动脉压力感受器在通过交感神经活动的变化控制动脉压(AP)变异性中的作用。在研究前2周,对自由行为的大鼠进行窦房性压力感受器去神经支配(SAD)或假手术(每组n = 10),在1小时内连续测量AP和肾交感神经活性(RSNA)。快速傅里叶变换分析显示,慢性SAD不会改变平均AP(MAP)和RSNA的高频(0.75-5 Hz)呼吸相关的振荡,在中频带(MF,包含所谓的Mayer波的频率为0.27-0.74 Hz),并且在不改变低频频段(0.005-0.27 Hz)的RSNA功率的情况下,导致MAP功率增加了八倍。在两组大鼠中,RSNA和MAP之间的相干性在MF波段最大,通常在较低频率下较弱。在SAD大鼠中,从RSNA到MAP的传递函数显示了具有固定时间延迟(约0.5 s)的二阶低通滤波器的特性。这些结果表明,动脉压力感受器不参与呼吸相关的RSNA振荡的产生,但在Mayer波频率下MAP和RSNA同步振荡的发生中起主要作用。在假手术和SAD大鼠中,RSNA和MAP的缓慢波动之间的弱耦合表明与RSNA无关的噪声源对MAP的影响和与MAP无关的噪声源对RSNA的影响。

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