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Transfer function analysis between arterial pressure and renal sympathetic nerve activity at cardiac pacing frequencies in the rat

机译:大鼠心脏起搏频率下动脉压与肾交感神经活动之间的传递函数分析

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This study examined the possible influence of changes in heart rate (HR) on the gain of the transfer function relating renal sympathetic nerve activity (RSNA) to arterial pressure (AP) at HR frequency in rats. In seven urethane-anesthetized rats, AP and RSNA were recorded under baseline conditions ( spontaneous HR = 338 +/- 6 beats/min, i. e., 5.6 +/- 0.1 Hz) and during 70-s periods of cardiac pacing at 6 - 9 Hz applied in random order. Cardiac pacing slightly increased mean AP (0.8 +/- 0.2 mmHg/Hz) and decreased pulse pressure (-3.6 +/- 0.3 mmHg/Hz) while leaving the mean level of RSNA essentially unaltered (P = 0.680, repeated-measures ANOVA). The gain of the transfer function from AP to RSNA measured at HR frequency was always associated with a strong, significant coherence and was stable between 6 and 9 Hz (P = 0.185). The transfer function gain measured under baseline conditions [2.44 +/- 0.28 normalized units (NU)/mmHg] did not differ from that measured during cardiac pacing (2.46 +/- 0.27 NU/mmHg). On the contrary, phase decreased linearly as a function of HR, which indicated the presence of a fixed time delay (97 +/- 6 ms) between AP and RSNA. In conclusion, the dynamic properties of arterial baroreflex pathways do not affect the gain of the transfer function between AP and RSNA measured at HR frequency in the upper part of the physiological range of HR variations in the rat.
机译:这项研究检查了心率(HR)的变化对大鼠以HR频率发生的肾交感神经活动(RSNA)与动脉压(AP)相关的传递函数的获得的可能影响。在七只经尿烷麻醉的大鼠中,在基线条件下(自发HR = 338 +/- 6次/ min,即5.6 +/- 0.1 Hz)和在心律起搏的70-s期间(6-9)记录AP和RSNA Hz以随机顺序施加。心脏起搏略微增加平均AP(0.8 +/- 0.2 mmHg / Hz)和降低脉压(-3.6 +/- 0.3 mmHg / Hz),同时保持RSNA的平均水平基本不变(P = 0.680,重复测量ANOVA) 。在心率频率下测得的从AP到RSNA的传递函数增益始终与强而显着的相干性相关,并且在6至9 Hz之间稳定(P = 0.185)。在基线条件下[2.44 +/- 0.28归一化单位(NU)/ mmHg]测量的传递函数增益与心脏起搏期间测得的传递函数增益(2.46 +/- 0.27 NU / mmHg)相同。相反,相位随HR呈线性下降,这表明AP和RSNA之间存在固定的时间延迟(97 +/- 6 ms)。总之,在大鼠HR变化的生理范围的上部,在HR频率下测量的动脉压力反射通路的动力学特性不会影响AP和RSNA之间传递函数的增益。

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