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Time-domain and spectral analysis of heart rate variability in rats challenged with hypoxia

机译:缺氧激发的大鼠心率变异性的时域和频谱分析

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Different approaches based on spectral and time-domain analysis of heart rate variability (HRV) were used to evaluate cardiac rhythm regulatory response to hypoxia. Nineteen male Wistar rats with previously implanted subcutaneous ECG electrodes, were maintained unrestrained in originally designed experimental setup, during normoxia and hypobaric hypoxia (-400 mmHg). RR intervals were extracted from continuous ECG recording. Time- and frequency-domain HRV estimates were computed from time-series of 1024 consecutive RRi. Power spectrum was obtained using both, fast Fourier transformation and autoregressive (AR) modeling. Compared to normoxia, hypoxia resulted in a significant increase of mean RRi, SDNN, rMSSD. AR and FFT analyses provided concordant power spectra across all tested bands. TP, including VLF, HF and predominantly LF, was increased in hypoxia, whereas LF/HF index of the sympatho-vagal balance remained unchanged. Changes in spectral power (TP, VLF, LF, HF) evoked by hypoxia correlated positively with simultaneous changes in SDNN and rMSSD. Interestingly, correlation coefficients derived from AR and FFT did not vary.
机译:使用基于心率变异性(HRV)的频谱和时域分析的不同方法来评估对低氧的心律调节反应。在正常氧和低压缺氧(-400 mmHg)期间,十九只雄性Wistar大鼠先前植入了皮下ECG电极,不受约束,保持了最初设计的实验设置。从连续的ECG记录中提取RR间隔。根据1024个连续RRi的时间序列计算出时域和频域HRV估计值。使用快速傅里叶变换和自回归(AR)建模均获得了功率谱。与常氧相比,低氧导致平均RRi,SDNN,rMSSD显着增加。 AR和FFT分析在所有测试频段上提供了一致的功率谱。 TP,包括VLF,HF和主要为LF,在缺氧时升高,而交感迷走平衡的LF / HF指数保持不变。缺氧引起的频谱功率(TP,VLF,LF,HF)的变化与SDNN和rMSSD的同时变化呈正相关。有趣的是,从AR和FFT得出的相关系数没有变化。

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