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首页> 外文期刊>Japanese Journal of Pharmacology >New Algorithms for Real-Time, 24 hr Continuous and Noise-Adjusted Power Spectral Analysis of Heart Rate and Blood Pressure Fluctuations in Conscious Rats
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New Algorithms for Real-Time, 24 hr Continuous and Noise-Adjusted Power Spectral Analysis of Heart Rate and Blood Pressure Fluctuations in Conscious Rats

机译:用于清醒大鼠心率和血压波动的实时,24小时连续和经噪声调整的功率谱分析的新算法

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References(18) Cited-By(8) The effective combination of C + + and assembler could realize real-time power spectral analysis of various fluctuation indexes simultaneously. The blood pressure (BP) waveform indexes (WIs) analyzed simultaneously were heart rate (HR), systolic blood pressure (SBP), mean blood pressure (MBP) and diastolic blood pressure (DBP). Power amplitudes (very low frequency, VLFamp; low frequency, LFamp; and high frequency, HFamp) were evaluated by accurate BP waveform recognition, accurate automatic rejection of outliers, baseline adjustment in periodograms and digital filtering of each amplitude. In the in vivo experiments, the amplitudes were changed in a dose-dependent manner by methylatropine (HR-VLFamp, HR-LFamp and HR-HFamp), phentolamine (HR-LFamp, SBP-VLFamp, SBP-LFamp and SBP-HFamp) and propranolol (HR-LFamp and SBP-LFamp). The absolute correlation coefficients of the amplitude and the change in each parameter were more than 0.96. In conclusion, this real-time, noise-adjusted power spectral analysis system for investigating HR and BP fluctuations enabled us to accurately evaluate autonomic nerve activity in conscious rats. Moreover, unlike other systems, this system was able to detect the biphasic changes in SBP-HFamps caused by phentolamine.
机译:参考文献(18)被引用的文献(8)C ++和汇编器的有效结合可以同时实现各种波动指标的实时功率谱分析。同时分析的血压(BP)波形指数(WIs)为心率(HR),收缩压(SBP),平均血压(MBP)和舒张压(DBP)。通过准确的BP波形识别,精确的异常值自动剔除,周期图的基线调整以及每个幅度的数字滤波,可以评估功率幅度(非常低频的VLFamp,低频的LFamp和高频的HFamp)。在体内实验中,振幅被甲基阿托品(HR-VLFamp,HR-LFamp和HR-HFamp),酚妥拉明(HR-LFamp,SBP-VLFamp,SBP-LFamp和SBP-HFamp)以剂量依赖性方式改变。和普萘洛尔(HR-LFamp和SBP-LFamp)。振幅的绝对相关系数和每个参数的变化均大于0.96。总之,这个用于研究HR和BP波动的实时,经过噪声调整的功率谱分析系统使我们能够准确评估清醒大鼠的自主神经活动。而且,与其他系统不同,该系统能够检测出由酚妥拉明引起的SBP-HFamps的双相变化。

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