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Observations and modeling of deterministic properties of human heart rate variability

机译:人心率变异性确定性特性的观察与建模

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Simple models show that in Type-I intermittency a characteristic U-shaped probability distribution is obtained for the laminar phase length. The laminar phase length distribution characteristic for Type-I intermittency may be obtained in human heart rate variability data for some cases of pathology. The heart and its regulatory systems are presumed to be both noisy and non-stationary. Although the effect of additive noise on the laminar phase distribution in Type-I intermittency is well-known, the effect of neither multiplicative noise nor non-stationarity have been studied. We first discuss the properties of two classes of models of Type-I intermittency: (a) the control parameter of the logistic map is changed dichotomously from a value within the intermittency range to just below the bifurcation point and back; (b) the control parameter is changed randomly within the same parameter range as in the model class (a). We show that the properties of both models are different from those obtained for Type-I intermittency in the presence of additive noise. The two models help to explain some of the features seen in the intermittency in human heart rate variability.
机译:简单模型表明,在I型间间隔中,为层间长度获得特征U形概率分布。对于某些病例情况,可以在人心率可变性数据中获得用于I型间间歇性的层状相长分布特性。被认为是嘈杂和非静止的心脏及其监管系统。尽管附加噪声对I型间歇性的层间分布的影响是众所周知的,但是已经研究了繁殖噪声和非公平性的效果。我们首先讨论两类模型的类型-i间歇性的属性:(a)逻辑图的控制参数从间歇范围内的值与分叉点和背部下方的值不同地改变了二分法。 (b)控制参数随机更改在与模型类(A)中相同的参数范围内。我们表明,两种模型的性质与在存在附加噪声的情况下为I型间歇性获得的特性不同。这两种模型有助于解释人类心率变异性间歇性中看到的一些特征。

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    《Pramana》 |2005年第4期|共页
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    J J Zebrowski1; R Baranowski;

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  • 入库时间 2022-08-19 00:36:06

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