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A quantitative model of relation between respiratory-related blood pressure fluctuations and the respiratory sinus arrhythmia

机译:呼吸相关的血压波动与呼吸窦性心律不齐之间的定量关系模型

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摘要

In order to propose an interpretation of recent experimental findings concerning short-term variability of arterial blood pressure (ABP), heart rate variability (HRV), and their dependence on body posture, we develop a qualitative dynamical model of the short-term cardiovascular variability at respiratory frequency (HF). It shows the respiratory-related blood pressure fluctuations in relation to the respiratory sinus arrhythmia (RSA). Results of the model-based analysis show that the observed phenomena may be interpreted as buffering of the respiratory-related ABP fluctuations by heart rate (HR) fluctuations, i.e., the respiratory sinus arrhythmia. A paradoxical enhancement (PE) of the fluctuations of the ABP in supine position, that was found in experiment, is explained on the ground of the model, as an ineffectiveness of control caused by the prolonged phase shift between the the peak of modulation of the pulmonary flow and the onset of stimulation of the heart. Such phasic changes were indeed observed in some other experimental conditions. Up to now, no other theoretical or physiological explanation of the PE effect exists, whereas further experiments were not performed due to technical problems. Better understanding of the short-term dynamics of blood pressure may improve medical diagnosis in cardiology and diseases which alter the functional state of the autonomous nervous system. >Graphical AbstractA simple mathematical model of cardiorespiratory dynamics. A novel class of mathematical models of blood pressure dynamics in humans allows to represent respiratory modulation of Arterial Blood Pressure. The model shows how the phase shift in neural control of the heart rate may produce Paradoxic Enhancement of respiratory Blood Pressure fluctuations. Observed in experiment. The model has many options for further development.
机译:为了对近期关于动脉血压(ABP)的短期变异性,心率变异性(HRV)及其对身体姿势的依赖性的实验发现提出解释,我们建立了短期心血管变异性的定性动力学模型在呼吸频率(HF)。它显示了与呼吸窦性心律不齐(RSA)相关的与呼吸有关的血压波动。基于模型的分析结果表明,观察到的现象可以解释为通过心率(HR)波动(即呼吸窦性心律失常)来缓解与呼吸有关的ABP波动。在实验中发现的仰卧位ABP波动的自相矛盾增强(PE),是在模型的基础上进行解释的,这是由于控制调制的峰值之间的长时间相移导致控制无效。肺血流和心脏刺激的发作。确实在其他一些实验条件下观察到了这种相位变化。到目前为止,还没有关于PE作用的其他理论或生理解释,但是由于技术问题,没有进行进一步的实验。更好地了解血压的短期动态可能会改善心脏病和疾病的医学诊断,从而改变自主神经系统的功能状态。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!-无花果/图形|无花果/替代品/图形模式=“锚定” m1-> <!-标题a7->心肺动力学的简单数学模型。新型的人类血压动态数学模型可以表示动脉血压的呼吸调节。该模型显示了心率神经控制中的相移可能如何引起呼吸血压波动的反常增强。在实验中观察到。该模型具有许多可供进一步开发的选项。

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