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通过心血管变异性的复解调对血流动力学控制进行连续评估。

Continuous assessment of hemodynamic control by complex demodulation of cardiovascular variability.

作者信息

Hayano J, Taylor J A, Yamada A, Mukai S, Hori R, Asakawa T, Yokoyama K, Watanabe Y, Takata K, Fujinami T

机构信息

Third Department of Internal Medicine, Nagoya City University Medical School, Japan.

出版信息

Am J Physiol. 1993 Apr;264(4 Pt 2):H1229-38. doi: 10.1152/ajpheart.1993.264.4.H1229.

Abstract

Usefulness of complex demodulation (CDM) in assessing the frequency components of cardiovascular variability was assessed and, subsequently, this technique was utilized to determine the time-dependent responses of the low-frequency (LF) and high-frequency (HF) amplitudes of heart rate and blood pressure variabilities during postural tilt. CDM provides the time-dependent changes in amplitude of a particular frequency component on a continuous basis. Analysis of simulated data showed that CDM has sufficient frequency resolution to separately measure LF and HF amplitudes with a time resolution < 15 s and that CDM is robust to alterations in the frequency of the components. Analysis of actual data during postural tilt test in 23 young healthy subjects demonstrated that the HF amplitude of heart rate, an index of cardiac parasympathetic tone, rapidly decayed with head-up tilt (P < 0.01) and increased quickly showing an overshoot with tilt back to the supine position (P < 0.01). The LF amplitude of blood pressure, an index of vasomotor sympathetic activity, showed marked rhythmic fluctuation at an interval of 48-100 s during head-up tilt (P < 0.01), synchronizing with similar fluctuation in the LF amplitude of heart rate (P < 0.01). These results suggest that CDM can be used to provide a continuous assessment of cardiovascular variability components and that the dynamic responses of autonomic circulatory control to upright posture result in a phasic modulation of LF amplitude.

摘要

评估了复解调(CDM)在评估心血管变异性频率成分方面的有用性,随后利用该技术确定姿势倾斜期间心率和血压变异性的低频(LF)和高频(HF)振幅随时间的变化。CDM可连续提供特定频率成分振幅随时间的变化。对模拟数据的分析表明,CDM具有足够的频率分辨率,能够以<15秒的时间分辨率分别测量LF和HF振幅,并且CDM对成分频率的变化具有鲁棒性。对23名年轻健康受试者姿势倾斜试验期间的实际数据进行分析表明,作为心脏副交感神经张力指标的心率HF振幅,在头向上倾斜时迅速衰减(P<0.01),在倾斜回仰卧位时迅速增加并出现过冲(P<0.01)。作为血管运动交感神经活动指标的血压LF振幅,在头向上倾斜期间以48 - 100秒的间隔显示出明显的节律性波动(P<0.01),与心率LF振幅的类似波动同步(P<0.01)。这些结果表明,CDM可用于连续评估心血管变异性成分,并且自主循环控制对直立姿势的动态反应导致LF振幅的相位调制。

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