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首页> 外文期刊>Mathematical Biosciences: An International Journal >Modeling human postural sway using an intermittent control and hemodynamic perturbations
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Modeling human postural sway using an intermittent control and hemodynamic perturbations

机译:使用间歇控制和血流动力学扰动对人体姿势摇摆进行建模

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Ground reaction force during human quiet stance is modulated synchronously with the cardiac cycle through hemodynamics [1]. This almost periodic hemodynamic force induces a small disturbance torque to the ankle joint, which is considered as a source of endogenous perturbation that induces postural sway. Here we consider postural sway dynamics of an inverted pendulum model with an intermittent control strategy, in comparison with the traditional continuous-time feedback controller. We examine whether each control model can exhibit human-like postural sway, characterized by its power law behavior at the low frequency band 0.1-0.7. Hz, when it is weakly perturbed by periodic and/or random forcing mimicking the hemodynamic perturbation. We show that the continuous control model with typical feedback gain parameters hardly exhibits the human-like sway pattern, in contrast with the intermittent control model. Further analyses suggest that deterministic, including chaotic, slow oscillations that characterize the intermittent control strategy, together with the small hemodynamic perturbation, could be a possible mechanism for generating the postural sway.
机译:人体静息状态下的地面反作用力通过血液动力学与心动周期同步调节[1]。这种几乎周期性的血液动力将对踝关节产生小的干扰扭矩,认为这是引起姿势摇摆的内源性扰动的来源。在这里,与传统的连续时间反馈控制器相比,我们考虑了具有间歇控制策略的倒立摆模型的姿态摇摆动力学。我们检查每个控制模型是否可以表现出类似于人的姿势摇摆,其特征是在0.1-0.7的低频段上具有幂律行为。 Hz,当它被周期性和/或随机强迫微弱地模仿血流动力学扰动时。我们表明,与间歇控制模型相比,具有典型反馈增益参数的连续控制模型几乎不表现出人性化的摇摆模式。进一步的分析表明,确定性的,包括混沌的,缓慢的,表征间歇控制策略的振荡以及较小的血液动力学扰动,可能是产生姿势摇摆的可能机制。

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