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Cardiovascular responses after brisk finger movement and their dependency on the eigenfrequency

机译:手指移动后的心血管反应及其对本征频率的依赖性

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摘要

The baroreflex is mainly involved in short-term blood pressure regulation and strongly influenced by activations of medullary circulation centres in the brain stem and higher brain centres. One important feature of the baroreflex is its strong preference for oscillations around 0.1Hz, which can be seen as resonance or "eigenfrequency" (EF) of the control loop (so-called Mayer waves). In the present study we investigated beat-to-beat heart rate intervals (RRI) and arterial blood pressure (BP) changes after brisk finger movement and their relationship to the "eigenfrequency" determined by cross spectral analysis between RRI and arterial blood pressure time series of 17 healthy subjects. The analyses revealed significant correlations between BP response magnitude (r=0.63, p<0.01) respectively RRI response magnitude (r=0.59, p<0.05) and EF. This can be interpreted in such a way that subjects with a "high" EF (> 0.10 Hz) elicit larger BP responses as well as larger RRI responses when compared to subjects with a "low" EF (< 0.10 Hz).
机译:压力反射主要参与短期血压调节,并受脑干和较高脑中枢中髓样循环中心的激活的强烈影响。压力反射的一个重要特征是它强烈偏爱0.1Hz左右的振荡,这可以看作是控制回路的共振或“本征频率”(EF)(所谓的Mayer波)。在本研究中,我们研究了手指快速移动后的每次搏动心率间隔(RRI)和动脉血压(BP)的变化及其与“特征频率”的关系,该关系通过RRI和动脉血压时间序列之间的交叉频谱分析确定17个健康受试者中。分析揭示了BP响应幅度(r = 0.63,p <0.01)和RRI响应幅度(r = 0.59,p <0.05)与EF之间显着相关。可以这样解释:与“低” EF(<0.10 Hz)的受试者相比,“高” EF(> 0.10 Hz)的受试者引起更大的BP响应以及更大的RRI响应。

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