Sipinková I, Hahn G, Meyer M, Tadlánek M, Hájek J
Institute of Physiology, Medical Faculty, Comenius University, Bratislava, Slovak Republic.
Physiol Res. 1997;46(3):173-9.
The physiological control system of the heart produces a highly complex pattern of cardiac rhythmicity which is reflected in the variability of heart rate. The aim of this study was to analyse the effects of posture and breathing frequency on the cardiac control system by various noninvasive techniques. Seven healthy subjects (24+/-5 years, mean age+/-S.D.) were studied in the supine and sitting positions while breathing spontaneously or at a fixed rate (3, 6, 12, 24, 48, 60 breaths.min(-1)). Time series of instantaneous beat-to-beat heart rates were evaluated by spectral analysis and by the dimensionless approximate entropy parameter. The total spectral power as well as the low (<0.05 Hz) and mid frequency (0.05-0.12 Hz) spectral components were higher in the sitting position. Mean approximate entropy (+/-S.D.) (0.85+/-0.15 in sitting and 0.87+/-0.16 in lying subjects) was unaffected by postural changes or breathing frequencies higher than 6 breaths x min(-1). Analysis in the frequency domain revealed that the activity of the autonomic components controlling heart rate was modified by ventilation and postural changes, whereas approximate entropy, a unique measure of the complexity and integrity of the cardiac control system, was almost unaffected by respiration and posture.
心脏的生理控制系统产生一种高度复杂的心脏节律模式,这反映在心率的变异性上。本研究的目的是通过各种非侵入性技术分析姿势和呼吸频率对心脏控制系统的影响。对7名健康受试者(年龄24±5岁,平均年龄±标准差)在仰卧位和坐位时进行研究,同时受试者自主呼吸或以固定频率(3、6、12、24、48、60次·分钟⁻¹)呼吸。通过频谱分析和无量纲近似熵参数评估逐搏瞬时心率的时间序列。坐位时总频谱功率以及低频(<0.05Hz)和中频(0.05 - 0.12Hz)频谱成分更高。平均近似熵(±标准差)(坐位受试者为0.85±0.15,卧位受试者为0.87±0.16)不受姿势变化或高于6次·分钟⁻¹的呼吸频率影响。频域分析表明,控制心率的自主神经成分的活动受通气和姿势变化的影响,而近似熵作为心脏控制系统复杂性和完整性的独特度量,几乎不受呼吸和姿势的影响。