Modeling heart rate regulation--part I: sit-to-stand versus head-up tilt.

Mette S Olufsen, April V Alston, Hien T Tran, Johnny T Ottesen, Vera Novak
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引用次数: 40

Abstract

In this study we describe a model predicting heart rate regulation during postural change from sitting to standing and during head-up tilt in five healthy elderly adults. The model uses blood pressure as an input to predict baroreflex firing-rate, which in turn is used to predict efferent parasympathetic and sympathetic outflows. The model also includes the combined effects of vestibular and central command stimulation of muscle sympathetic nerve activity, which is increased at the onset of postural change. Concentrations of acetylcholine and noradrenaline, predicted as functions of sympathetic and parasympathetic outflow, are then used to estimate the heart rate response. Dynamics of the heart rate and the baroreflex firing rate are modeled using a system of coupled ordinary delay differential equations with 17 parameters. We have derived sensitivity equations and ranked sensitivities of all parameters with respect to all state variables in our model. Using this model we show that during head-up tilt, the baseline firing-rate is larger than during sit-to-stand and that the combined effect of vestibular and central command stimulation of muscle sympathetic nerve activity is less pronounced during head-up tilt than during sit-to-stand.

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心率调节模型——第一部分:坐立对抗平头倾斜。
在这项研究中,我们描述了一个模型预测心率调节从坐到站的姿势变化和头向上倾斜在五名健康老年人。该模型使用血压作为输入来预测气压反射放电速率,进而用于预测副交感神经和交感神经的输出。该模型还包括前庭和中枢指令刺激肌肉交感神经活动的联合效应,这种刺激在姿势改变开始时增加。乙酰胆碱和去甲肾上腺素的浓度被预测为交感神经和副交感神经流出的功能,然后被用来估计心率反应。采用17个参数的耦合常延迟微分方程系统对心率和气压反射射率的动力学进行了建模。我们推导了灵敏度方程,并对模型中所有状态变量的所有参数的灵敏度进行了排序。利用该模型,我们发现,在平头倾斜时,基线射击率比坐立时大,前庭和中枢指令刺激肌肉交感神经活动的联合效应在平头倾斜时比坐立时不那么明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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