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首页> 外文期刊>IEEE Transactions on Signal Processing >Point-Process Nonlinear Models With Laguerre and Volterra Expansions: Instantaneous Assessment of Heartbeat Dynamics
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Point-Process Nonlinear Models With Laguerre and Volterra Expansions: Instantaneous Assessment of Heartbeat Dynamics

机译:具有Laguerre和Volterra扩展的点过程非线性模型:心跳动力学的即时评估

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摘要

In the last decades, mathematical modeling and signal processing techniques have played an important role in the study of cardiovascular control physiology and heartbeat nonlinear dynamics. In particular, nonlinear models have been devised for the assessment of the cardiovascular system by accounting for short-memory second-order nonlinearities. In this paper, we introduce a novel inverse Gaussian point process model with Laguerre expansion of the nonlinear Volterra kernels. Within the model, the second-order nonlinearities also account for the long-term information given by the past events of the nonstationary non-Gaussian time series. In addition, the mathematical link to an equivalent cubic input-output Wiener-Volterra model allows for a novel instantaneous estimation of the dynamic spectrum, bispectrum and trispectrum of the considered inter-event intervals. The proposed framework is tested with synthetic simulations and two experimental heartbeat interval datasets. Applications on further heterogeneous datasets such as milling inserts, neural spikes, gait from short walks, and geyser geologic events are also reported. Results show that our model improves on previously developed models and, at the same time, it is able to provide a novel instantaneous characterization and tracking of the inherent nonlinearity of heartbeat dynamics.
机译:在过去的几十年中,数学建模和信号处理技术在心血管控制生理学和心跳非线性动力学的研究中发挥了重要作用。特别地,已经通过考虑短期记忆二阶非线性来设计用于评估心血管系统的非线性模型。在本文中,我们介绍了一种新颖的高斯逆点过程模型,该模型具有非线性Volterra核的Laguerre展开。在模型中,二阶非线性还考虑了非平稳非高斯时间序列过去事件给出的长期信息。此外,与等效的三次输入-输出维纳-沃尔泰拉模型的数学链接允许对考虑到的事件间间隔的动态频谱,双频谱和三频谱进行新颖的瞬时估计。所提出的框架已通过综合模拟和两个实验性心跳间隔数据集进行了测试。还报告了在其他异类数据集上的应用,例如铣削刀片,神经尖峰,短距离步态和间歇泉地质事件。结果表明,我们的模型对先前开发的模型进行了改进,同时,它能够提供新颖的瞬时表征和心跳动力学固有非线性的跟踪。

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