Radhakrishna R K, Dutt D N, Yeragani V K
Department of ECE, Indian Institute of Science, Bangalore, India.
Auton Neurosci. 2000 Oct 2;83(3):148-58. doi: 10.1016/s1566-0702(00)00173-9.
In this study, we investigated measures of nonlinear dynamics and chaos theory in regards to heart rate variability in 27 normal control subjects in supine and standing postures, and 14 subjects in spontaneous and controlled breathing conditions. We examined minimum embedding dimension (MED), largest Lyapunov exponent (LLE) and measures of nonlinearity (NL) of heart rate time series. MED quantifies the system's complexity, LLE predictability and NL, a measure of deviation from linear processes. There was a significant decrease in complexity (P < 0.00001), a decrease in predictability (P < 0.00001) and an increase in nonlinearity (P = 0.00001) during the change from supine to standing posture. Decrease in MED, and increases in NL score and LLE in standing posture appear to be partly due to an increase in sympathetic activity of the autonomous nervous system in standing posture. An improvement in predictability during controlled breathing appears to be due to the introduction of a periodic component.
在本研究中,我们调查了27名正常对照受试者在仰卧和站立姿势下以及14名受试者在自主呼吸和控制呼吸条件下心率变异性的非线性动力学和混沌理论指标。我们检查了心率时间序列的最小嵌入维数(MED)、最大Lyapunov指数(LLE)和非线性度(NL)指标。MED量化系统复杂性,LLE量化可预测性,NL衡量与线性过程的偏差程度。从仰卧姿势转变为站立姿势时,复杂性显著降低(P < 0.00001),可预测性降低(P < 0.00001),非线性度增加(P = 0.00001)。站立姿势下MED降低、NL评分和LLE增加似乎部分归因于站立姿势下自主神经系统交感神经活动增加。控制呼吸期间可预测性的改善似乎归因于周期性成分的引入。