首页> 外文会议>Annual International Conference of the IEEE Engineering in Medicine and Biology Society >A new Frequency Domain Measure of Causality based on Partial Spectral Decomposition of Autoregressive Processes and its Application to Cardiovascular Interactions*
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A new Frequency Domain Measure of Causality based on Partial Spectral Decomposition of Autoregressive Processes and its Application to Cardiovascular Interactions*

机译:基于归类工艺局部谱分解及其在心血管交互的应用的新频域测量 *

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We present a new method to quantify in the frequency domain the strength of directed interactions between linear stochastic processes. This issue is traditionally addressed by the directed coherence (DC), a popular causality measure derived from the spectral representation of vector autoregressive (AR) processes. Here, to overcome intrinsic limitations of the DC when it needs to be objectively quantified within specific frequency bands, we propose an approach based on spectral decomposition, which allows to isolate oscillatory components related to the pole representation of the vector AR process in the Z-domain. Relating the causal and non-causal power content of these components we obtain a new spectral causality measure, denoted as pole-specific spectral causality (PSSC). In this study, PSSC is compared with DC in the context of cardiovascular variability analysis, where evaluation of the spectral causality from arterial pressure to heart period variability is of interest to assess baroreflex modulation in the low frequency band (0.04-0-15 Hz). Using both a theoretical example in which baroreflex interactions are simulated, and real cardiovascular variability series measured from a group of healthy subjects during a postural challenge, we show that – compared with DC– PSSC leads to a frequency-specific evaluation of spectral causality which is more objective and more focused on the frequency band of interest.
机译:我们提出在频域中量化线性随机过程之间的定向相互作用的强度的新方法。此问题是传统上由引导相干性(DC),从向量自回归(AR)处理的频谱表示获得的流行因果措施解决。这里,为了克服DC的固有局限性在需要特定频带内进行客观量化它,我们提出了一种基于谱分解,这允许在Z相关的矢量AR过程的极分离的表示振动分量的方法领域。关于这些组件我们得到了一个新的光谱测量的因果关系,表示为极特定光谱的因果关系(PSSC)的因果和非因果功率内容。在这项研究中,PSSC与DC心血管变异性分析,其中从动脉压到心脏周期变化性光谱因果关系的评价是感兴趣以评估在低频带压力反射调制的上下文中进行比较(0.04-0-15赫兹) 。使用这两种理论的例子,其中压力感受性反射的相互作用进行模拟和体位的挑战过程中,从一组健康者的实际测量心血管变异系列中,我们表明 - 与DC- PSSC导致频谱因果关系的频率,具体评价是比较更客观,更专注于感兴趣的频段。

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