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Human vagal baroreflex sensitivity fluctuates widely and rhythmically at very low frequencies

机译:人类迷走神经压力反射敏感性在非常低的频率下有规律地波动

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摘要

Arterial pressure fluctuates rhythmically in healthy supine resting humans, who, from all outward appearances, are in a ‘steady-state’. Others have asked, If baroreflex mechanisms are functioning normally, how can arterial pressure be so variable? We reanalysed data from nine healthy young adult men and women and tested the hypotheses that during brief periods of observation, human baroreflex sensitivity fluctuates widely and rhythmically. We estimated vagal baroreflex sensitivity with systolic pressure and R–R interval cross-spectra measured over 15 s segments, moved by 2 s steps through 20-min periods of frequency- and tidal volume-controlled breathing. We studied each subject at the same time on three separate days, with fixed protocols that included two physiological states, supine and passive 40 deg upright tilt, before and after β-adrenergic, cholinergic, and angiotensin converting enzyme blockade. Minimum, mean and maximum (±s.d.) supine control baroreflex sensitivities averaged 5 ± 3, 18 ± 6, and 55 ± 22 ms mmHg−1. In most subjects, moderate ongoing fluctuations of baroreflex sensitivity were punctuated by brief major peaks, yielding frequency distributions that were skewed positively. Fast Fourier transforms indicated that baroreflex sensitivity fluctuations (expressed as percentages of total power) concentrated more in very low, 0.003–0.04 Hz, than ultra low, 0.0–0.003 Hz, frequencies (77 ± 7 versus 11 ± 8%, P≤ 0.001, rank sum test). Autoregressive centre frequencies averaged 0.012 ± 0.003 Hz. The periodicity of very low frequency baroreflex sensitivity fluctuations was not influenced significantly by upright tilt, or by variations of autonomic drive or angiotensin activity. Our analysis indicates that during ostensibly ‘steady-state’ conditions, human vagal baroreflex sensitivity fluctuates in a major way, at very low frequencies.
机译:在健康的仰卧位休息的人中,动脉压有节奏地波动,从各个方面来看,他们都处于“稳定状态”。其他人则问,如果压力反射机制正常运行,那么动脉压如何变化?我们重新分析了来自9位健康的成年男性和女性的数据,并检验了以下假设:在短暂的观察期间,人体压力反射敏感度在广泛且有规律的范围内波动。我们估计了迷走神经压力反射敏感性,其收缩压和R-R间隔交叉频谱在15 s段内测量,在频率和潮气量控制的呼吸20分钟内以2 s步长移动。我们在三个独立的日期同时研究了每个受试者,采用固定方案,包括在β-肾上腺素能,胆碱能和血管紧张素转化酶阻断之前和之后的两种生理状态:仰卧和被动40度直立倾斜。仰卧控制压力反射的最小,平均和最大值(±s.d。)mmHg-1平均为5±3、18±6和55±22 ms。在大多数受试者中,压力反射敏感性的持续中等波动被短暂的主要峰值所打断,从而产生了正偏斜的频率分布。快速傅立叶变换表明,压力反射敏感度波动(表示为总功率的百分比)在非常低的频率(0.003–0.04 Hz)上比在频率(77±7对11±8%,P≤0.001)上的超低频率集中于0.0-0.003 Hz。 ,排名总和测试)。自回归中心频率平均为0.012±0.003 Hz。极低频率压力反射灵敏度波动的周期性不受直立倾斜或自主神经驱动或血管紧张素活性变化的影响。我们的分析表明,在表面上处于“稳态”状态下,人类迷走神经压力反射敏感性会以非常低的频率波动。

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