Aubert A E, Ramaekers D, Beckers F, Breem R, Denef C, Van de Werf F, Ector H
Department of Cardiology, University Hospital Gasthuisberg, Leuven, Belgium.
Comput Methods Programs Biomed. 1999 Nov;60(3):197-213. doi: 10.1016/s0169-2607(99)00017-6.
An experimental setting and software were developed to evaluate cardiac autonomic function in unrestrained rats. Subcutaneously implanted ECG electrodes and an indwelling venous catheter were tunneled to a tail cuff in five rats. The ECG was A/D converted at 1000 Hz. After peak detection, a time series of RR intervals was obtained. Programs for the analysis of heart rate variability (HRV) were implemented in LabVIEW. Statistical properties were determined in the time domain. After cubic spline function curve fitting, resampling at 0.1 s and test for stationarity, power spectral analysis was performed on sampled records of 30 min duration after applying a sliding Hanning window (Welch method: 256 points (duration 25.6 s), 50% overlap and 0.039 Hz resolution). Algorithms were tested with simulated signals consisting of isolated frequency components, which were retrieved at their exact locations. Physiological validation of the system was performed by, beta-adrenergic and cholinergic blockade and by forced breathing at a fixed rate. Measurements were performed on five unrestrained rats under basal conditions. Mean RR was 174.2 +/- 3.6 ms; S.D., 13.3 +/- 4.6 ms; rMSSD, 5.2 + /- 1.2 ms; pNN10, 3.5 +/- 1.9% and pNN5, 18.7 +/- 6.4%. Low (0.19-0.74 Hz) and high frequency (0.78-2.5 Hz) power were determined (and also percent of low to total and high to total): 18.42 +/- 10.74 ms2 (22.9 +/- 6.5%) and 15.66 +/- 5.56 ms2 (19.9 +/- 2.7%), and the ratio low/high: 1.16 +/- 0.39. In conclusion, HRV analysis programs were developed and thoroughly tested through simulations and in vivo, under basal conditions and after pharmacological blockades. Using this software, HRV data from unrestrained rats were obtained.
开发了一种实验装置和软件,用于评估自由活动大鼠的心脏自主神经功能。在五只大鼠身上,将皮下植入的心电图电极和留置静脉导管通过皮下隧道连接到尾套。心电图以1000Hz进行A/D转换。经过峰值检测后,获得RR间期的时间序列。心率变异性(HRV)分析程序在LabVIEW中实现。在时域中确定统计特性。经过三次样条函数曲线拟合、0.1s重采样和平稳性检验后,在应用滑动汉宁窗(韦尔奇方法:256个点(持续时间25.6s),50%重叠,分辨率0.039Hz)后,对30分钟时长的采样记录进行功率谱分析。算法用由孤立频率成分组成的模拟信号进行测试,这些频率成分在其确切位置被检索到。通过β-肾上腺素能和胆碱能阻断以及以固定速率强制呼吸对系统进行生理验证。在基础条件下对五只自由活动的大鼠进行测量。平均RR为174.2±3.6ms;标准差为13.3±4.6ms;rMSSD为5.2±1.2ms;pNN10为3.5±1.9%,pNN5为18.7±6.4%。确定了低频(0.19 - 0.74Hz)和高频(0.78 - 2.5Hz)功率(以及低频与总功率和高频与总功率的百分比):18.42±10.74ms²(22.9±6.5%)和15.66±5.56ms²(19.9±2.7%),以及低频/高频比值:1.16±0.39。总之,开发了HRV分析程序,并通过模拟和体内实验,在基础条件下以及药理学阻断后进行了全面测试。使用该软件,获得了自由活动大鼠的HRV数据。